237 lines
4.2 KiB
C
237 lines
4.2 KiB
C
#include "u.h"
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#include "../port/lib.h"
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#include "mem.h"
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#include "dat.h"
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#include "fns.h"
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#include "io.h"
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#include "../port/error.h"
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#define Image IMAGE
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#include <draw.h>
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#include <memdraw.h>
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#include <cursor.h>
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#include "screen.h"
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/*
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* IBM RGB524.
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* 170/220MHz High Performance Palette DAC.
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*
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* Assumes hooked up to an S3 Vision96[48].
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*/
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enum {
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IndexLo = 0x00,
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IndexHi = 0x01,
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Data = 0x02,
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IndexCtl = 0x03,
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};
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enum { /* index registers */
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CursorCtl = 0x30,
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CursorXLo = 0x31,
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CursorXHi = 0x32,
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CursorYLo = 0x33,
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CursorYHi = 0x34,
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CursorHotX = 0x35,
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CursorHotY = 0x36,
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CursorR1 = 0x40,
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CursorG1 = 0x41,
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CursorB1 = 0x42,
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CursorR2 = 0x43,
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CursorG2 = 0x44,
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CursorB2 = 0x45,
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CursorR3 = 0x46,
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CursorG3 = 0x47,
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CursorB3 = 0x48,
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CursorArray = 0x100,
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};
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/*
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* Lower 2-bits of indirect DAC register
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* addressing.
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*/
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static ushort dacxreg[4] = {
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PaddrW, Pdata, Pixmask, PaddrR
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};
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static uchar
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rgb524setrs2(void)
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{
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uchar rs2;
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rs2 = vgaxi(Crtx, 0x55);
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vgaxo(Crtx, 0x55, (rs2 & 0xFC)|0x01);
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return rs2;
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}
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static void
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rgb524xo(int index, uchar data)
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{
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vgao(dacxreg[IndexLo], index & 0xFF);
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vgao(dacxreg[IndexHi], (index>>8) & 0xFF);
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vgao(dacxreg[Data], data);
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}
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static void
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rgb524disable(VGAscr*)
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{
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uchar rs2;
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rs2 = rgb524setrs2();
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rgb524xo(CursorCtl, 0x00);
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vgaxo(Crtx, 0x55, rs2);
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}
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static void
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rgb524enable(VGAscr*)
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{
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uchar rs2;
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rs2 = rgb524setrs2();
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/*
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* Make sure cursor is off by initialising the cursor
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* control to defaults.
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*/
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rgb524xo(CursorCtl, 0x00);
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/*
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* Cursor colour 1 (white),
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* cursor colour 2 (black).
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*/
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rgb524xo(CursorR1, Pwhite); rgb524xo(CursorG1, Pwhite); rgb524xo(CursorB1, Pwhite);
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rgb524xo(CursorR2, Pblack); rgb524xo(CursorG2, Pblack); rgb524xo(CursorB2, Pblack);
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/*
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* Enable the cursor, 32x32, mode 2.
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*/
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rgb524xo(CursorCtl, 0x23);
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vgaxo(Crtx, 0x55, rs2);
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}
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static void
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rgb524load(VGAscr*, Cursor* curs)
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{
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uchar p, p0, p1, rs2;
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int x, y;
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rs2 = rgb524setrs2();
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/*
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* Make sure cursor is off by initialising the cursor
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* control to defaults.
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*/
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rgb524xo(CursorCtl, 0x00);
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/*
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* Set auto-increment mode for index-register addressing
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* and initialise the cursor array index.
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*/
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vgao(dacxreg[IndexCtl], 0x01);
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vgao(dacxreg[IndexLo], CursorArray & 0xFF);
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vgao(dacxreg[IndexHi], (CursorArray>>8) & 0xFF);
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/*
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* Initialise the 32x32 cursor RAM array. There are 2 planes,
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* p0 and p1. Data is written 4 pixels per byte, with p1 the
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* MS bit of each pixel.
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* The cursor is set in X-Windows mode which gives the following
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* truth table:
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* p1 p0 colour
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* 0 0 underlying pixel colour
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* 0 1 underlying pixel colour
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* 1 0 cursor colour 1
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* 1 1 cursor colour 2
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* Put the cursor into the top-left of the 32x32 array.
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*/
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for(y = 0; y < 32; y++){
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for(x = 0; x < 32/8; x++){
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if(x < 16/8 && y < 16){
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p0 = curs->clr[x+y*2];
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p1 = curs->set[x+y*2];
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p = 0x00;
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if(p1 & 0x80)
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p |= 0xC0;
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else if(p0 & 0x80)
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p |= 0x80;
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if(p1 & 0x40)
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p |= 0x30;
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else if(p0 & 0x40)
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p |= 0x20;
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if(p1 & 0x20)
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p |= 0x0C;
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else if(p0 & 0x20)
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p |= 0x08;
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if(p1 & 0x10)
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p |= 0x03;
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else if(p0 & 0x10)
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p |= 0x02;
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vgao(dacxreg[Data], p);
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p = 0x00;
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if(p1 & 0x08)
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p |= 0xC0;
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else if(p0 & 0x08)
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p |= 0x80;
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if(p1 & 0x04)
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p |= 0x30;
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else if(p0 & 0x04)
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p |= 0x20;
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if(p1 & 0x02)
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p |= 0x0C;
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else if(p0 & 0x02)
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p |= 0x08;
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if(p1 & 0x01)
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p |= 0x03;
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else if(p0 & 0x01)
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p |= 0x02;
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vgao(dacxreg[Data], p);
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}
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else{
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vgao(dacxreg[Data], 0x00);
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vgao(dacxreg[Data], 0x00);
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}
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}
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}
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/*
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* Initialise the cursor hotpoint,
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* enable the cursor and restore state.
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*/
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rgb524xo(CursorHotX, -curs->offset.x);
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rgb524xo(CursorHotY, -curs->offset.y);
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rgb524xo(CursorCtl, 0x23);
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vgaxo(Crtx, 0x55, rs2);
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}
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static int
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rgb524move(VGAscr*, Point p)
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{
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uchar rs2;
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rs2 = rgb524setrs2();
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rgb524xo(CursorXLo, p.x & 0xFF);
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rgb524xo(CursorXHi, (p.x>>8) & 0x0F);
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rgb524xo(CursorYLo, p.y & 0xFF);
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rgb524xo(CursorYHi, (p.y>>8) & 0x0F);
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vgaxo(Crtx, 0x55, rs2);
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return 0;
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}
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VGAcur vgargb524cur = {
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"rgb524hwgc",
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rgb524enable,
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rgb524disable,
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rgb524load,
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rgb524move,
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};
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