mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-19 11:18:28 +00:00
414 lines
12 KiB
C
414 lines
12 KiB
C
/*
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* (C) Copyright 2001
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* Wolfgang Denk, DENX Software Engineering -- wd@denx.de
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*
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* See file CREDITS for list of people who contributed to this
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* project.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation; either version 2 of
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* the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston,
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* MA 02111-1307 USA
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*/
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/************************************************************************/
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/* ** DEBUG SETTINGS */
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/************************************************************************/
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/* #define DEBUG */
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/************************************************************************/
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/* ** HEADER FILES */
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/************************************************************************/
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#include <config.h>
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#include <common.h>
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#include <version.h>
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#include <stdarg.h>
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#include <linux/types.h>
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#include <devices.h>
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#include <s3c2400.h>
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#ifdef CONFIG_VFD
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/************************************************************************/
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/* ** CONFIG STUFF -- should be moved to board config file */
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/************************************************************************/
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/************************************************************************/
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#ifndef PAGE_SIZE
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#define PAGE_SIZE 4096
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#endif
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#define ROT 0x09
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#define BLAU 0x0C
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#define VIOLETT 0X0D
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ulong vfdbase;
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ulong frame_buf_size;
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#define frame_buf_offs 4
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/* taken from armboot/common/vfd.c */
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ulong adr_vfd_table[112][18][2][4][2];
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unsigned char bit_vfd_table[112][18][2][4][2];
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/*
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* initialize the values for the VFD-grid-control in the framebuffer
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*/
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void init_grid_ctrl(void)
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{
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ulong adr, grid_cycle;
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unsigned int bit, display;
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unsigned char temp, bit_nr;
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for (adr=vfdbase; adr<=(vfdbase+7168); adr+=4) /*clear frame buffer */
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(*(volatile ulong*)(adr))=0;
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for(display=0;display<=3;display++)
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{
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for(grid_cycle=0;grid_cycle<=55;grid_cycle++)
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{
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bit = grid_cycle*256*4+(grid_cycle+200)*4+frame_buf_offs+display;
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/* wrap arround if offset (see manual S3C2400) */
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if (bit>=frame_buf_size*8)
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bit = bit-(frame_buf_size*8);
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adr = vfdbase+(bit/32)*4+(3-(bit%32)/8);
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bit_nr = bit%8;
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bit_nr = (bit_nr>3)?bit_nr-4:bit_nr+4;
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temp=(*(volatile unsigned char*)(adr));
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temp|=(1<<bit_nr);
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(*(volatile unsigned char*)(adr))=temp;
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if(grid_cycle<55)
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bit = grid_cycle*256*4+(grid_cycle+201)*4+frame_buf_offs+display;
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else
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bit = grid_cycle*256*4+200*4+frame_buf_offs+display-4; /* grid nr. 0 */
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/* wrap arround if offset (see manual S3C2400) */
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if (bit>=frame_buf_size*8)
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bit = bit-(frame_buf_size*8);
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adr = vfdbase+(bit/32)*4+(3-(bit%32)/8);
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bit_nr = bit%8;
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bit_nr = (bit_nr>3)?bit_nr-4:bit_nr+4;
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temp=(*(volatile unsigned char*)(adr));
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temp|=(1<<bit_nr);
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(*(volatile unsigned char*)(adr))=temp;
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}
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}
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}
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/*
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*create translation table for getting easy the right position in the
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*physical framebuffer for some x/y-coordinates of the VFDs
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*/
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void create_vfd_table(void)
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{
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unsigned int vfd_table[112][18][2][4][2];
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ulong adr;
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unsigned int x, y, color, display, entry, pixel, bit_nr;
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/*
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* Create translation table for Noritake-T119C-VFD-specific
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* organized frame-buffer.
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* Created is the number of the bit in the framebuffer (the
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* first transferred pixel of each frame is bit 0).
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*/
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for(y=0;y<=17;y++) /* Zeile */
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{
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for(x=0;x<=111;x++) /* Spalten */
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{
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/*Display 0 blaue Pixel Eintrag 1 */
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vfd_table[x][y][0][0][0]=((x%4)*4+y*16+(x/4)*2048);
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/*Display 0 rote Pixel Eintrag 1 */
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vfd_table[x][y][1][0][0]=((x%4)*4+y*16+(x/4)*2048+512);
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if(x<=1)
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{
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/*Display 0 blaue Pixel Eintrag 2 */
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vfd_table[x][y][0][0][1]=(((x+112)%4)*4+y*16+((x+110)/4)*2048+1024);
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/*Display 0 rote Pixel Eintrag 2 */
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vfd_table[x][y][1][0][1]=(((x+112)%4)*4+y*16+((x+110)/4)*2048+512+1024);
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}
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else
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{
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/*Display 0 blaue Pixel Eintrag 2 */
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vfd_table[x][y][0][0][1]=((x%4)*4+y*16+((x-2)/4)*2048+1024);
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/*Display 0 rote Pixel Eintrag 2 */
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vfd_table[x][y][1][0][1]=((x%4)*4+y*16+((x-2)/4)*2048+512+1024);
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}
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/*Display 1 blaue Pixel Eintrag 1 */
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vfd_table[x][y][0][1][0]=((x%4)*4+y*16+(x/4)*2048+1);
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/*Display 1 rote Pixel Eintrag 1 */
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vfd_table[x][y][1][1][0]=((x%4)*4+y*16+(x/4)*2048+512+1);
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if(x<=1)
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{
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/*Display 1 blaue Pixel Eintrag 2 */
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vfd_table[x][y][0][1][1]=(((x+112)%4)*4+y*16+((x+110)/4)*2048+1+1024);
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/*Display 1 rote Pixel Eintrag 2 */
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vfd_table[x][y][1][1][1]=(((x+112)%4)*4+y*16+((x+110)/4)*2048+512+1+1024);
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}
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else
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{
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/*Display 1 blaue Pixel Eintrag 2 */
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vfd_table[x][y][0][1][1]=((x%4)*4+y*16+((x-2)/4)*2048+1+1024);
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/*Display 1 rote Pixel Eintrag 2 */
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vfd_table[x][y][1][1][1]=((x%4)*4+y*16+((x-2)/4)*2048+512+1+1024);
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}
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/*Display 2 blaue Pixel Eintrag 1 */
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vfd_table[x][y][0][2][0]=((x%4)*4+y*16+(x/4)*2048+2);
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/*Display 2 rote Pixel Eintrag 1 */
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vfd_table[x][y][1][2][0]=((x%4)*4+y*16+(x/4)*2048+512+2);
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if(x<=1)
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{
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/*Display 2 blaue Pixel Eintrag 2 */
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vfd_table[x][y][0][2][1]=(((x+112)%4)*4+y*16+((x+110)/4)*2048+2+1024);
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/*Display 2 rote Pixel Eintrag 2 */
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vfd_table[x][y][1][2][1]=(((x+112)%4)*4+y*16+((x+110)/4)*2048+512+2+1024);
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}
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else
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{
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/*Display 2 blaue Pixel Eintrag 2 */
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vfd_table[x][y][0][2][1]=((x%4)*4+y*16+((x-2)/4)*2048+2+1024);
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/*Display 2 rote Pixel Eintrag 2 */
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vfd_table[x][y][1][2][1]=((x%4)*4+y*16+((x-2)/4)*2048+512+2+1024);
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}
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/*Display 3 blaue Pixel Eintrag 1 */
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vfd_table[x][y][0][3][0]=((x%4)*4+y*16+(x/4)*2048+3);
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/*Display 3 rote Pixel Eintrag 1 */
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vfd_table[x][y][1][3][0]=((x%4)*4+y*16+(x/4)*2048+512+3);
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if(x<=1)
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{
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/*Display 3 blaue Pixel Eintrag 2 */
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vfd_table[x][y][0][3][1]=(((x+112)%4)*4+y*16+((x+110)/4)*2048+3+1024);
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/*Display 3 rote Pixel Eintrag 2 */
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vfd_table[x][y][1][3][1]=(((x+112)%4)*4+y*16+((x+110)/4)*2048+512+3+1024);
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}
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else
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{
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/*Display 3 blaue Pixel Eintrag 2 */
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vfd_table[x][y][0][3][1]=((x%4)*4+y*16+((x-2)/4)*2048+3+1024);
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/*Display 3 rote Pixel Eintrag 2 */
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vfd_table[x][y][1][3][1]=((x%4)*4+y*16+((x-2)/4)*2048+512+3+1024);
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}
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}
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}
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/*
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* Create translation table for Noritake-T119C-VFD-specific
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* organized frame-buffer
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* Create table with entries for physical byte adresses and
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* bit-number within the byte
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* from table with bit-numbers within the total framebuffer
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*/
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for(y=0;y<=17;y++)
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{
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for(x=0;x<=111;x++)
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{
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for(color=0;color<=1;color++)
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{
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for(display=0;display<=3;display++)
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{
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for(entry=0;entry<=1;entry++)
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{
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pixel = vfd_table[x][y][color][display][entry] + frame_buf_offs;
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/*
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* wrap arround if offset
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* (see manual S3C2400)
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*/
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if (pixel>=frame_buf_size*8)
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pixel = pixel-(frame_buf_size*8);
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adr = vfdbase+(pixel/32)*4+(3-(pixel%32)/8);
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bit_nr = pixel%8;
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bit_nr = (bit_nr>3)?bit_nr-4:bit_nr+4;
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adr_vfd_table[x][y][color][display][entry] = adr;
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bit_vfd_table[x][y][color][display][entry] = bit_nr;
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}
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}
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}
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}
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}
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}
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/*
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* Set/clear pixel of the VFDs
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*/
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void set_vfd_pixel(unsigned char x, unsigned char y, unsigned char color, unsigned char display, unsigned char value)
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{
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ulong adr;
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unsigned char bit_nr, temp;
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if (value!=0)
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{
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/* Pixel-Eintrag Nr. 1 */
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adr = adr_vfd_table[x][y][color][display][0];
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/* Pixel-Eintrag Nr. 1 */
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bit_nr = bit_vfd_table[x][y][color][display][0];
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temp=(*(volatile unsigned char*)(adr));
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temp|=1<<bit_nr;
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(*(volatile unsigned char*)(adr))=temp;
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/* Pixel-Eintrag Nr. 2 */
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adr = adr_vfd_table[x][y][color][display][1];
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/* Pixel-Eintrag Nr. 2 */
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bit_nr = bit_vfd_table[x][y][color][display][1];
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temp=(*(volatile unsigned char*)(adr));
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temp|=1<<bit_nr;
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(*(volatile unsigned char*)(adr))=temp;
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}
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else
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{
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/* Pixel-Eintrag Nr. 1 */
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adr = adr_vfd_table[x][y][color][display][0];
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/* Pixel-Eintrag Nr. 1 */
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bit_nr = bit_vfd_table[x][y][color][display][0];
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temp=(*(volatile unsigned char*)(adr));
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temp&=~(1<<bit_nr);
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(*(volatile unsigned char*)(adr))=temp;
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/* Pixel-Eintrag Nr. 2 */
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adr = adr_vfd_table[x][y][color][display][1];
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/* Pixel-Eintrag Nr. 2 */
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bit_nr = bit_vfd_table[x][y][color][display][1];
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temp=(*(volatile unsigned char*)(adr));
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temp&=~(1<<bit_nr);
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(*(volatile unsigned char*)(adr))=temp;
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}
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}
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/*
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* transfer image from BMP-File
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*/
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void transfer_pic(int display, unsigned char *adr, int height, int width)
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{
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int x, y;
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unsigned char temp;
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for (; height > 0; height -= 18)
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{
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if (height > 18)
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y = 18;
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else
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y = height;
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for (; y > 0; y--)
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{
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for (x = 0; x < width; x += 2)
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{
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temp = *adr++;
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set_vfd_pixel(x, y-1, 0, display, 0);
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set_vfd_pixel(x, y-1, 1, display, 0);
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if ((temp >> 4) == BLAU)
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set_vfd_pixel(x, y-1, 0, display, 1);
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else if ((temp >> 4) == ROT)
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set_vfd_pixel(x, y-1, 1, display, 1);
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else if ((temp >> 4) == VIOLETT)
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{
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set_vfd_pixel(x, y-1, 0, display, 1);
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set_vfd_pixel(x, y-1, 1, display, 1);
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}
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set_vfd_pixel(x+1, y-1, 0, display, 0);
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set_vfd_pixel(x+1, y-1, 1, display, 0);
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if ((temp & 0x0F) == BLAU)
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set_vfd_pixel(x+1, y-1, 0, display, 1);
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else if ((temp & 0x0F) == ROT)
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set_vfd_pixel(x+1, y-1, 1, display, 1);
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else if ((temp & 0x0F) == VIOLETT)
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{
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set_vfd_pixel(x+1, y-1, 0, display, 1);
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set_vfd_pixel(x+1, y-1, 1, display, 1);
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}
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}
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}
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display++;
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if (display > 3)
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display = 0;
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}
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}
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/*
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* initialize LCD-Controller of the S3C2400 for using VFDs
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*/
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int drv_vfd_init(void)
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{
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ulong palette;
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DECLARE_GLOBAL_DATA_PTR;
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vfdbase = gd->fb_base;
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create_vfd_table();
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init_grid_ctrl();
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/*
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* Hinweis: Der Framebuffer ist um genau ein Nibble verschoben
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* Das erste angezeigte Pixel wird aus dem zweiten Nibble geholt
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* das letzte angezeigte Pixel wird aus dem ersten Nibble geholt
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* (wrap around)
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* see manual S3C2400
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*/
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/* frame buffer startadr */
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rLCDSADDR1 = vfdbase >> 1;
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/* frame buffer endadr */
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rLCDSADDR2 = (vfdbase + frame_buf_size) >> 1;
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rLCDSADDR3 = ((256/4));
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/* Port-Pins als LCD-Ausgang */
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rPCCON = (rPCCON & 0xFFFFFF00)| 0x000000AA;
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/* Port-Pins als LCD-Ausgang */
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rPDCON = (rPDCON & 0xFFFFFF03)| 0x000000A8;
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#ifdef WITH_VFRAME
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/* mit VFRAME zum Messen */
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rPDCON = (rPDCON & 0xFFFFFF00)| 0x000000AA;
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#endif
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rLCDCON2 = 0x000DC000;
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rLCDCON3 = 0x0051000A;
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rLCDCON4 = 0x00000001;
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rLCDCON5 = 0x00000440;
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rLCDCON1 = 0x00000B75;
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debug ("LCDSADDR1: %lX\n", rLCDSADDR1);
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debug ("LCDSADDR2: %lX\n", rLCDSADDR2);
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debug ("LCDSADDR3: %lX\n", rLCDSADDR3);
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for(palette=0;palette<=15;palette++)
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(*(volatile unsigned int*)(PALETTE+(palette*4)))=palette;
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for(palette=16;palette<=255;palette++)
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(*(volatile unsigned int*)(PALETTE+(palette*4)))=0x00;
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return 0;
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}
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/************************************************************************/
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/* ** ROM capable initialization part - needed to reserve FB memory */
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/************************************************************************/
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/*
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* This is called early in the system initialization to grab memory
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* for the VFD controller.
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*
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* Note that this is running from ROM, so no write access to global data.
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*/
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ulong vfd_setmem (ulong addr)
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{
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ulong size;
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/* MAGIC */
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frame_buf_size = (256*4*56)/8;
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/* Round up to nearest full page */
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size = (frame_buf_size + (PAGE_SIZE - 1)) & ~(PAGE_SIZE - 1);
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debug ("Reserving %ldk for VFD Framebuffer at: %08lx\n", size>>10, addr);
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return (size);
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}
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#endif /* CONFIG_VFD */
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