mirror of
https://github.com/AsahiLinux/u-boot
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00caae6d47
We are now using an env_ prefix for environment functions. Rename these two functions for consistency. Also add function comments in common.h. Quite a few places use getenv() in a condition context, provoking a warning from checkpatch. These are fixed up in this patch also. Suggested-by: Wolfgang Denk <wd@denx.de> Signed-off-by: Simon Glass <sjg@chromium.org>
485 lines
11 KiB
C
485 lines
11 KiB
C
/*
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* (C) Copyright 2007
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* DENX Software Engineering, Anatolij Gustschin, agust@denx.de
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*
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* SPDX-License-Identifier: GPL-2.0+
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*/
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/*
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* mb862xx.c - Graphic interface for Fujitsu CoralP/Lime
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* PCI and video mode code was derived from smiLynxEM driver.
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*/
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#include <common.h>
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#include <asm/io.h>
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#include <pci.h>
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#include <video_fb.h>
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#include "videomodes.h"
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#include <mb862xx.h>
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#if defined(CONFIG_POST)
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#include <post.h>
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#endif
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/*
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* Graphic Device
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*/
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GraphicDevice mb862xx;
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/*
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* 32MB external RAM - 256K Chip MMIO = 0x1FC0000 ;
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*/
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#define VIDEO_MEM_SIZE 0x01FC0000
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#if defined(CONFIG_PCI)
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#if defined(CONFIG_VIDEO_CORALP)
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static struct pci_device_id supported[] = {
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{ PCI_VENDOR_ID_FUJITSU, PCI_DEVICE_ID_CORAL_P },
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{ PCI_VENDOR_ID_FUJITSU, PCI_DEVICE_ID_CORAL_PA },
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{ }
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};
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/* Internal clock frequency divider table, index is mode number */
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unsigned int fr_div[] = { 0x00000f00, 0x00000900, 0x00000500 };
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#endif
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#endif
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#if defined(CONFIG_VIDEO_CORALP)
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#define rd_io in32r
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#define wr_io out32r
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#else
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#define rd_io(addr) in_be32((volatile unsigned *)(addr))
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#define wr_io(addr, val) out_be32((volatile unsigned *)(addr), (val))
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#endif
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#define HOST_RD_REG(off) rd_io((dev->frameAdrs + GC_HOST_BASE + (off)))
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#define HOST_WR_REG(off, val) wr_io((dev->frameAdrs + GC_HOST_BASE + (off)), \
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(val))
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#define DISP_RD_REG(off) rd_io((dev->frameAdrs + GC_DISP_BASE + (off)))
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#define DISP_WR_REG(off, val) wr_io((dev->frameAdrs + GC_DISP_BASE + (off)), \
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(val))
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#define DE_RD_REG(off) rd_io((dev->dprBase + (off)))
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#define DE_WR_REG(off, val) wr_io((dev->dprBase + (off)), (val))
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#if defined(CONFIG_VIDEO_CORALP)
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#define DE_WR_FIFO(val) wr_io((dev->dprBase + (GC_GEO_FIFO)), (val))
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#else
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#define DE_WR_FIFO(val) wr_io((dev->dprBase + (GC_FIFO)), (val))
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#endif
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#define L0PAL_WR_REG(idx, val) wr_io((dev->frameAdrs + \
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(GC_DISP_BASE | GC_L0PAL0) + \
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((idx) << 2)), (val))
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#if defined(CONFIG_VIDEO_MB862xx_ACCEL)
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static void gdc_sw_reset (void)
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{
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GraphicDevice *dev = &mb862xx;
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HOST_WR_REG (GC_SRST, 0x1);
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udelay (500);
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video_hw_init ();
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}
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static void de_wait (void)
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{
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GraphicDevice *dev = &mb862xx;
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int lc = 0x10000;
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/*
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* Sync with software writes to framebuffer,
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* try to reset if engine locked
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*/
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while (DE_RD_REG (GC_CTR) & 0x00000131)
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if (lc-- < 0) {
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gdc_sw_reset ();
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puts ("gdc reset done after drawing engine lock.\n");
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break;
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}
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}
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static void de_wait_slots (int slots)
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{
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GraphicDevice *dev = &mb862xx;
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int lc = 0x10000;
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/* Wait for free fifo slots */
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while (DE_RD_REG (GC_IFCNT) < slots)
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if (lc-- < 0) {
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gdc_sw_reset ();
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puts ("gdc reset done after drawing engine lock.\n");
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break;
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}
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}
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#endif
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#if !defined(CONFIG_VIDEO_CORALP)
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static void board_disp_init (void)
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{
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GraphicDevice *dev = &mb862xx;
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const gdc_regs *regs = board_get_regs ();
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while (regs->index) {
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DISP_WR_REG (regs->index, regs->value);
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regs++;
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}
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}
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#endif
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/*
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* Init drawing engine if accel enabled.
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* Also clears visible framebuffer.
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*/
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static void de_init (void)
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{
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GraphicDevice *dev = &mb862xx;
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#if defined(CONFIG_VIDEO_MB862xx_ACCEL)
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int cf = (dev->gdfBytesPP == 1) ? 0x0000 : 0x8000;
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dev->dprBase = dev->frameAdrs + GC_DRAW_BASE;
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/* Setup mode and fbbase, xres, fg, bg */
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de_wait_slots (2);
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DE_WR_FIFO (0xf1010108);
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DE_WR_FIFO (cf | 0x0300);
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DE_WR_REG (GC_FBR, 0x0);
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DE_WR_REG (GC_XRES, dev->winSizeX);
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DE_WR_REG (GC_FC, 0x0);
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DE_WR_REG (GC_BC, 0x0);
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/* Reset clipping */
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DE_WR_REG (GC_CXMIN, 0x0);
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DE_WR_REG (GC_CXMAX, dev->winSizeX);
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DE_WR_REG (GC_CYMIN, 0x0);
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DE_WR_REG (GC_CYMAX, dev->winSizeY);
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/* Clear framebuffer using drawing engine */
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de_wait_slots (3);
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DE_WR_FIFO (0x09410000);
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DE_WR_FIFO (0x00000000);
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DE_WR_FIFO (dev->winSizeY << 16 | dev->winSizeX);
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/* sync with SW access to framebuffer */
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de_wait ();
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#else
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unsigned int i, *p;
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i = dev->winSizeX * dev->winSizeY;
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p = (unsigned int *)dev->frameAdrs;
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while (i--)
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*p++ = 0;
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#endif
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}
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#if defined(CONFIG_VIDEO_CORALP)
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/* use CCF and MMR parameters for Coral-P Eval. Board as default */
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#ifndef CONFIG_SYS_MB862xx_CCF
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#define CONFIG_SYS_MB862xx_CCF 0x00090000
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#endif
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#ifndef CONFIG_SYS_MB862xx_MMR
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#define CONFIG_SYS_MB862xx_MMR 0x11d7fa13
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#endif
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unsigned int pci_video_init (void)
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{
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GraphicDevice *dev = &mb862xx;
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pci_dev_t devbusfn;
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u16 device;
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if ((devbusfn = pci_find_devices (supported, 0)) < 0) {
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puts("controller not present\n");
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return 0;
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}
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/* PCI setup */
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pci_write_config_dword (devbusfn, PCI_COMMAND,
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(PCI_COMMAND_MEMORY | PCI_COMMAND_IO));
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pci_read_config_dword (devbusfn, PCI_BASE_ADDRESS_0, &dev->frameAdrs);
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dev->frameAdrs = pci_mem_to_phys (devbusfn, dev->frameAdrs);
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if (dev->frameAdrs == 0) {
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puts ("PCI config: failed to get base address\n");
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return 0;
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}
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dev->pciBase = dev->frameAdrs;
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puts("Coral-");
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pci_read_config_word(devbusfn, PCI_DEVICE_ID, &device);
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switch (device) {
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case PCI_DEVICE_ID_CORAL_P:
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puts("P\n");
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break;
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case PCI_DEVICE_ID_CORAL_PA:
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puts("PA\n");
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break;
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default:
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puts("Unknown\n");
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return 0;
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}
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/* Setup clocks and memory mode for Coral-P(A) */
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HOST_WR_REG(GC_CCF, CONFIG_SYS_MB862xx_CCF);
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udelay (200);
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HOST_WR_REG(GC_MMR, CONFIG_SYS_MB862xx_MMR);
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udelay (100);
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return dev->frameAdrs;
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}
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unsigned int card_init (void)
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{
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GraphicDevice *dev = &mb862xx;
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unsigned int cf, videomode, div = 0;
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unsigned long t1, hsync, vsync;
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char *penv;
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int tmp, i, bpp;
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struct ctfb_res_modes *res_mode;
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struct ctfb_res_modes var_mode;
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memset (dev, 0, sizeof (GraphicDevice));
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if (!pci_video_init ())
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return 0;
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tmp = 0;
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videomode = 0x310;
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/* get video mode via environment */
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penv = env_get("videomode");
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if (penv) {
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/* decide if it is a string */
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if (penv[0] <= '9') {
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videomode = (int) simple_strtoul (penv, NULL, 16);
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tmp = 1;
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}
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} else {
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tmp = 1;
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}
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if (tmp) {
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/* parameter are vesa modes, search params */
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for (i = 0; i < VESA_MODES_COUNT; i++) {
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if (vesa_modes[i].vesanr == videomode)
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break;
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}
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if (i == VESA_MODES_COUNT) {
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printf ("\tno VESA Mode found, fallback to mode 0x%x\n",
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videomode);
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i = 0;
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}
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res_mode = (struct ctfb_res_modes *)
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&res_mode_init[vesa_modes[i].resindex];
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if (vesa_modes[i].resindex > 2) {
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puts ("\tUnsupported resolution, using default\n");
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bpp = vesa_modes[1].bits_per_pixel;
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div = fr_div[1];
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}
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bpp = vesa_modes[i].bits_per_pixel;
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div = fr_div[vesa_modes[i].resindex];
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} else {
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res_mode = (struct ctfb_res_modes *) &var_mode;
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bpp = video_get_params (res_mode, penv);
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}
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/* calculate hsync and vsync freq (info only) */
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t1 = (res_mode->left_margin + res_mode->xres +
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res_mode->right_margin + res_mode->hsync_len) / 8;
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t1 *= 8;
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t1 *= res_mode->pixclock;
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t1 /= 1000;
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hsync = 1000000000L / t1;
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t1 *= (res_mode->upper_margin + res_mode->yres +
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res_mode->lower_margin + res_mode->vsync_len);
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t1 /= 1000;
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vsync = 1000000000L / t1;
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/* fill in Graphic device struct */
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sprintf (dev->modeIdent, "%dx%dx%d %ldkHz %ldHz", res_mode->xres,
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res_mode->yres, bpp, (hsync / 1000), (vsync / 1000));
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printf ("\t%s\n", dev->modeIdent);
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dev->winSizeX = res_mode->xres;
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dev->winSizeY = res_mode->yres;
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dev->memSize = VIDEO_MEM_SIZE;
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switch (bpp) {
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case 8:
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dev->gdfIndex = GDF__8BIT_INDEX;
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dev->gdfBytesPP = 1;
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break;
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case 15:
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case 16:
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dev->gdfIndex = GDF_15BIT_555RGB;
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dev->gdfBytesPP = 2;
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break;
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default:
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printf ("\t%d bpp configured, but only 8,15 and 16 supported\n",
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bpp);
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puts ("\tfallback to 15bpp\n");
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dev->gdfIndex = GDF_15BIT_555RGB;
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dev->gdfBytesPP = 2;
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}
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/* Setup dot clock (internal pll, division rate) */
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DISP_WR_REG (GC_DCM1, div);
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/* L0 init */
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cf = (dev->gdfBytesPP == 1) ? 0x00000000 : 0x80000000;
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DISP_WR_REG (GC_L0M, ((dev->winSizeX * dev->gdfBytesPP) / 64) << 16 |
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(dev->winSizeY - 1) | cf);
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DISP_WR_REG (GC_L0OA0, 0x0);
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DISP_WR_REG (GC_L0DA0, 0x0);
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DISP_WR_REG (GC_L0DY_L0DX, 0x0);
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DISP_WR_REG (GC_L0EM, 0x0);
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DISP_WR_REG (GC_L0WY_L0WX, 0x0);
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DISP_WR_REG (GC_L0WH_L0WW, (dev->winSizeY - 1) << 16 | dev->winSizeX);
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/* Display timing init */
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DISP_WR_REG (GC_HTP_A, (dev->winSizeX +
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res_mode->left_margin +
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res_mode->right_margin +
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res_mode->hsync_len - 1) << 16);
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DISP_WR_REG (GC_HDB_HDP_A, (dev->winSizeX - 1) << 16 |
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(dev->winSizeX - 1));
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DISP_WR_REG (GC_VSW_HSW_HSP_A, (res_mode->vsync_len - 1) << 24 |
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(res_mode->hsync_len - 1) << 16 |
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(dev->winSizeX +
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res_mode->right_margin - 1));
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DISP_WR_REG (GC_VTR_A, (dev->winSizeY + res_mode->lower_margin +
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res_mode->upper_margin +
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res_mode->vsync_len - 1) << 16);
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DISP_WR_REG (GC_VDP_VSP_A, (dev->winSizeY-1) << 16 |
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(dev->winSizeY +
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res_mode->lower_margin - 1));
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DISP_WR_REG (GC_WY_WX, 0x0);
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DISP_WR_REG (GC_WH_WW, dev->winSizeY << 16 | dev->winSizeX);
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/* Display enable, L0 layer */
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DISP_WR_REG (GC_DCM1, 0x80010000 | div);
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return dev->frameAdrs;
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}
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#endif
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#if !defined(CONFIG_VIDEO_CORALP)
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int mb862xx_probe(unsigned int addr)
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{
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GraphicDevice *dev = &mb862xx;
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unsigned int reg;
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dev->frameAdrs = addr;
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dev->dprBase = dev->frameAdrs + GC_DRAW_BASE;
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/* Try to access GDC ID/Revision registers */
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reg = HOST_RD_REG (GC_CID);
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reg = HOST_RD_REG (GC_CID);
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if (reg == 0x303) {
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reg = DE_RD_REG(GC_REV);
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reg = DE_RD_REG(GC_REV);
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if ((reg & ~0xff) == 0x20050100)
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return MB862XX_TYPE_LIME;
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}
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return 0;
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}
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#endif
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void *video_hw_init (void)
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{
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GraphicDevice *dev = &mb862xx;
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puts ("Video: Fujitsu ");
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memset (dev, 0, sizeof (GraphicDevice));
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#if defined(CONFIG_VIDEO_CORALP)
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if (card_init () == 0)
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return NULL;
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#else
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/*
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* Preliminary init of the onboard graphic controller,
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* retrieve base address
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*/
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if ((dev->frameAdrs = board_video_init ()) == 0) {
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puts ("Controller not found!\n");
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return NULL;
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} else {
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puts ("Lime\n");
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/* Set Change of Clock Frequency Register */
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HOST_WR_REG (GC_CCF, CONFIG_SYS_MB862xx_CCF);
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/* Delay required */
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udelay(300);
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/* Set Memory I/F Mode Register) */
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HOST_WR_REG (GC_MMR, CONFIG_SYS_MB862xx_MMR);
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}
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#endif
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de_init ();
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#if !defined(CONFIG_VIDEO_CORALP)
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board_disp_init ();
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#endif
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#if (defined(CONFIG_LWMON5) || \
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defined(CONFIG_SOCRATES)) && !(CONFIG_POST & CONFIG_SYS_POST_SYSMON)
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/* Lamp on */
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board_backlight_switch (1);
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#endif
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return dev;
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}
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/*
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* Set a RGB color in the LUT
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*/
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void video_set_lut (unsigned int index, unsigned char r,
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unsigned char g, unsigned char b)
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{
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GraphicDevice *dev = &mb862xx;
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L0PAL_WR_REG (index, (r << 16) | (g << 8) | (b));
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}
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#if defined(CONFIG_VIDEO_MB862xx_ACCEL)
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/*
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* Drawing engine Fill and BitBlt screen region
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*/
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void video_hw_rectfill (unsigned int bpp, unsigned int dst_x,
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unsigned int dst_y, unsigned int dim_x,
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unsigned int dim_y, unsigned int color)
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{
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GraphicDevice *dev = &mb862xx;
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de_wait_slots (3);
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DE_WR_REG (GC_FC, color);
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DE_WR_FIFO (0x09410000);
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DE_WR_FIFO ((dst_y << 16) | dst_x);
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DE_WR_FIFO ((dim_y << 16) | dim_x);
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de_wait ();
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}
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void video_hw_bitblt (unsigned int bpp, unsigned int src_x,
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unsigned int src_y, unsigned int dst_x,
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unsigned int dst_y, unsigned int width,
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unsigned int height)
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{
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GraphicDevice *dev = &mb862xx;
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unsigned int ctrl = 0x0d000000L;
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if (src_x >= dst_x && src_y >= dst_y)
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ctrl |= 0x00440000L;
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else if (src_x >= dst_x && src_y <= dst_y)
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ctrl |= 0x00460000L;
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else if (src_x <= dst_x && src_y >= dst_y)
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ctrl |= 0x00450000L;
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else
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ctrl |= 0x00470000L;
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de_wait_slots (4);
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DE_WR_FIFO (ctrl);
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DE_WR_FIFO ((src_y << 16) | src_x);
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DE_WR_FIFO ((dst_y << 16) | dst_x);
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DE_WR_FIFO ((height << 16) | width);
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de_wait (); /* sync */
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}
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#endif
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