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/programs/demos/gpio/gpio.asm
0,0 → 1,176
;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
; ;
; 86DUINO GPIO DEMO APPLICATION ;
; ;
; Compile with FASM ;
; ;
;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
format binary as "" ; Binary file format without extension
 
use32 ; Tell compiler to use 32 bit instructions
org 0x0 ; the base address of code, always 0x0
 
; The header
 
db 'MENUET01'
dd 0x01
dd START
dd I_END
dd 0x100000
dd 0x7fff0
dd 0, 0
; The code area
include '../../macros.inc'
START: ; start of execution
 
mcall 68, 16, drv_name ; load the driver
mov [IOCTL.handle], eax
 
call draw_window ; draw the window
; After the window is drawn, it's practical to have the main loop.
; Events are distributed from here.
event_wait:
mov eax, 10 ; function 10 : wait until event
mcall ; event type is returned in eax
cmp eax, 1 ; Event redraw request ?
je red ; Expl.: there has been activity on screen and
; parts of the applications has to be redrawn.
cmp eax, 2 ; Event key in buffer ?
je key ; Expl.: User has pressed a key while the
; app is at the top of the window stack.
cmp eax, 3 ; Event button in buffer ?
je button ; Expl.: User has pressed one of the
; applications buttons.
jmp event_wait
; The next section reads the event and processes data.
red: ; Redraw event handler
call draw_window ; We call the window_draw function and
jmp event_wait ; jump back to event_wait
key: ; Keypress event handler
mov eax, 2 ; The key is returned in ah. The key must be
mcall ; read and cleared from the system queue.
 
cmp ah, 'q'
jne @f
call read_gpio0
or al, 1 ; Set bit 0
call write_gpio0
jmp event_wait
@@:
cmp ah, 'w'
jne @f
call read_gpio0
and al, not 1 ; Clear bit 0
call write_gpio0
jmp event_wait
 
@@:
jmp event_wait ; Just read the key, ignore it and jump to event_wait.
button: ; Buttonpress event handler
mov eax,17 ; The button number defined in window_draw
mcall ; is returned to ah.
cmp ah,1 ; button id=1 ?
jne noclose
mov eax,-1 ; Function -1 : close this program
mcall
noclose:
jmp event_wait ; This is for ignored events, useful at development
; *********************************************
; ****** WINDOW DEFINITIONS AND DRAW ********
; *********************************************
;
; The static window parts are drawn in this function. The window canvas can
; be accessed later from any parts of this code (thread) for displaying
; processes or recorded data, for example.
;
; The static parts *must* be placed within the fn 12 , ebx = 1 and ebx = 2.
draw_window:
mov eax, 12 ; function 12: tell os about windowdraw
mov ebx, 1 ; 1, start of draw
mcall
mov eax, 0 ; function 0 : define and draw window
mov ebx, 100 * 65536 + 300 ; [x start] *65536 + [x size]
mov ecx, 100 * 65536 + 120 ; [y start] *65536 + [y size]
mov edx, 0x14ffffff ; color of work area RRGGBB
; 0x02000000 = window type 4 (fixed size, skinned window)
mov esi, 0x808899ff ; color of grab bar RRGGBB
; 0x80000000 = color glide
mov edi, title
mcall
mov ebx, 25 * 65536 + 35 ; draw info text with function 4
mov ecx, 0x224466
mov edx, text
mov esi, 40
mov eax, 4
.newline: ; text from the DATA AREA
mcall
add ebx, 10
add edx, 40
cmp byte[edx], 0
jne .newline
mov eax, 12 ; function 12:tell os about windowdraw
mov ebx, 2 ; 2, end of draw
mcall
ret
 
; Read GPIO0 port to AL register
read_gpio0:
mov [IOCTL.io_code], 1
mcall 68, 17, IOCTL
ret
 
; Write AL register to GPIO0 port
write_gpio0:
mov [IOCTL.io_code], 2
mov [IOCTL.input], eax
mcall 68, 17, IOCTL
ret
; *********************************************
; ************* DATA AREA *****************
; *********************************************
;
; Data can be freely mixed with code to any parts of the image.
; Only the header information is required at the beginning of the image.
text db "This is an 86DUINO GPIO demo program "
db " "
db "press q/w to toggle GPIO 0 pin 0 ", 0
title db "86Duino Example application", 0
 
drv_name db '86DUINO-GPIO', 0
 
IOCTL:
.handle dd ?
.io_code dd ?
.input dd ?
.inp_size dd ?
.output dd ?
.out_size dd ?
I_END: