mirror of
https://github.com/irmen/prog8.git
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0d4dd385b8
(%ir is probably only used in the library modules for the virtual machine target)
222 lines
4.9 KiB
Lua
222 lines
4.9 KiB
Lua
; Prog8 definitions for the Virtual Machine
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sys {
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; ------- lowlevel system routines --------
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const ubyte target = 255 ; compilation target specifier. 64 = C64, 128 = C128, 16 = CommanderX16, 8 = atari800XL, 255 = virtual
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sub reset_system() {
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; Soft-reset the system back to initial power-on Basic prompt.
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%ir {{
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syscall 0
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}}
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}
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sub wait(uword jiffies) {
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; --- wait approximately the given number of jiffies (1/60th seconds)
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%ir {{
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loadm.w r0,sys.wait.jiffies
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syscall 13
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}}
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}
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sub waitvsync() {
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; --- busy wait till the next vsync has occurred (approximately), without depending on custom irq handling.
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%ir {{
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syscall 14
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}}
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}
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sub internal_stringcopy(uword source, uword tgt) {
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; Called when the compiler wants to assign a string value to another string.
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while @(source) {
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@(tgt) = @(source)
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source++
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tgt++
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}
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@(tgt)=0
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}
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sub memcopy(uword source, uword tgt, uword count) {
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repeat count {
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@(tgt) = @(source)
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source++
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tgt++
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}
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}
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sub memset(uword mem, uword numbytes, ubyte value) {
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repeat numbytes {
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@(mem) = value
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mem++
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}
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}
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sub memsetw(uword mem, uword numwords, uword value) {
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repeat numwords {
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pokew(mem, value)
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mem+=2
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}
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}
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sub exit(ubyte returnvalue) {
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; -- immediately exit the program with a return code in the A register
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%ir {{
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loadm.b r0,sys.exit.returnvalue
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syscall 1
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}}
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}
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sub set_carry() {
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%ir {{
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sec
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}}
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}
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sub clear_carry() {
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%ir {{
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clc
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}}
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}
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sub gfx_enable(ubyte mode) {
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%ir {{
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loadm.b r0,sys.gfx_enable.mode
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syscall 8
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}}
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}
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sub gfx_clear(ubyte color) {
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%ir {{
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loadm.b r0,sys.gfx_clear.color
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syscall 9
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}}
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}
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sub gfx_plot(uword xx, uword yy, ubyte color) {
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%ir {{
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loadm.w r0,sys.gfx_plot.xx
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loadm.w r1,sys.gfx_plot.yy
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loadm.b r2,sys.gfx_plot.color
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syscall 10
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}}
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}
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sub gfx_getpixel(uword xx, uword yy) -> ubyte {
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%ir {{
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loadm.w r0,sys.gfx_getpixel.xx
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loadm.w r1,sys.gfx_getpixel.yy
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syscall 30
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return
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}}
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}
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}
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cx16 {
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; the sixteen virtual 16-bit registers that the CX16 has defined in the zeropage
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; they are simulated on the VirtualMachine as well but their location in memory is different
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&uword r0 = $ff02
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&uword r1 = $ff04
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&uword r2 = $ff06
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&uword r3 = $ff08
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&uword r4 = $ff0a
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&uword r5 = $ff0c
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&uword r6 = $ff0e
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&uword r7 = $ff10
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&uword r8 = $ff12
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&uword r9 = $ff14
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&uword r10 = $ff16
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&uword r11 = $ff18
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&uword r12 = $ff1a
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&uword r13 = $ff1c
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&uword r14 = $ff1e
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&uword r15 = $ff20
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&word r0s = $ff02
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&word r1s = $ff04
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&word r2s = $ff06
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&word r3s = $ff08
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&word r4s = $ff0a
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&word r5s = $ff0c
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&word r6s = $ff0e
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&word r7s = $ff10
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&word r8s = $ff12
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&word r9s = $ff14
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&word r10s = $ff16
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&word r11s = $ff18
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&word r12s = $ff1a
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&word r13s = $ff1c
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&word r14s = $ff1e
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&word r15s = $ff20
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&ubyte r0L = $ff02
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&ubyte r1L = $ff04
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&ubyte r2L = $ff06
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&ubyte r3L = $ff08
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&ubyte r4L = $ff0a
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&ubyte r5L = $ff0c
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&ubyte r6L = $ff0e
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&ubyte r7L = $ff10
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&ubyte r8L = $ff12
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&ubyte r9L = $ff14
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&ubyte r10L = $ff16
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&ubyte r11L = $ff18
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&ubyte r12L = $ff1a
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&ubyte r13L = $ff1c
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&ubyte r14L = $ff1e
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&ubyte r15L = $ff20
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&ubyte r0H = $ff03
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&ubyte r1H = $ff05
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&ubyte r2H = $ff07
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&ubyte r3H = $ff09
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&ubyte r4H = $ff0b
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&ubyte r5H = $ff0d
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&ubyte r6H = $ff0f
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&ubyte r7H = $ff11
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&ubyte r8H = $ff13
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&ubyte r9H = $ff15
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&ubyte r10H = $ff17
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&ubyte r11H = $ff19
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&ubyte r12H = $ff1b
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&ubyte r13H = $ff1d
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&ubyte r14H = $ff1f
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&ubyte r15H = $ff21
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&byte r0sL = $ff02
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&byte r1sL = $ff04
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&byte r2sL = $ff06
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&byte r3sL = $ff08
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&byte r4sL = $ff0a
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&byte r5sL = $ff0c
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&byte r6sL = $ff0e
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&byte r7sL = $ff10
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&byte r8sL = $ff12
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&byte r9sL = $ff14
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&byte r10sL = $ff16
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&byte r11sL = $ff18
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&byte r12sL = $ff1a
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&byte r13sL = $ff1c
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&byte r14sL = $ff1e
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&byte r15sL = $ff20
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&byte r0sH = $ff03
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&byte r1sH = $ff05
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&byte r2sH = $ff07
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&byte r3sH = $ff09
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&byte r4sH = $ff0b
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&byte r5sH = $ff0d
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&byte r6sH = $ff0f
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&byte r7sH = $ff11
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&byte r8sH = $ff13
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&byte r9sH = $ff15
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&byte r10sH = $ff17
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&byte r11sH = $ff19
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&byte r12sH = $ff1b
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&byte r13sH = $ff1d
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&byte r14sH = $ff1f
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&byte r15sH = $ff21
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}
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