mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-27 23:21:01 +00:00
f6a7a2e888
Use pci_bus_to_virt() to convert the bus address from the BARs to virtual address' to eliminate the direct mapping requirement. Rename variables to better match usage (_phys -> _bus or no-suffix) This fixes the mpc8572ds CONFIG_PHYS_64BIT mode failure: "videoboot: Video ROM failed to map!" Tested on mpc8572ds with and without CONFIG_PHYS_64BIT. Signed-off-by: Ed Swarthout <Ed.Swarthout@freescale.com>
338 lines
11 KiB
C
338 lines
11 KiB
C
/****************************************************************************
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*
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* Video BOOT Graphics Card POST Module
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*
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* ========================================================================
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* Copyright (C) 2007 Freescale Semiconductor, Inc.
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* Jason Jin <Jason.jin@freescale.com>
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*
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* Copyright (C) 1991-2004 SciTech Software, Inc. All rights reserved.
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*
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* This file may be distributed and/or modified under the terms of the
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* GNU General Public License version 2.0 as published by the Free
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* Software Foundation and appearing in the file LICENSE.GPL included
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* in the packaging of this file.
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*
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* Licensees holding a valid Commercial License for this product from
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* SciTech Software, Inc. may use this file in accordance with the
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* Commercial License Agreement provided with the Software.
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*
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* This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING
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* THE WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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* PURPOSE.
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*
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* See http://www.scitechsoft.com/license/ for information about
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* the licensing options available and how to purchase a Commercial
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* License Agreement.
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*
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* Contact license@scitechsoft.com if any conditions of this licensing
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* are not clear to you, or you have questions about licensing options.
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*
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* ========================================================================
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*
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* Language: ANSI C
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* Environment: Linux Kernel
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* Developer: Kendall Bennett
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*
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* Description: Module to implement booting PCI/AGP controllers on the
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* bus. We use the x86 real mode emulator to run the BIOS on
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* graphics controllers to bring the cards up.
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*
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* Note that at present this module does *not* support
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* multiple controllers.
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*
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* The orignal name of this file is warmboot.c.
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* Jason ported this file to u-boot to run the ATI video card
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* BIOS in u-boot.
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****************************************************************************/
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#include <common.h>
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#include "biosemui.h"
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#include <malloc.h>
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/* Length of the BIOS image */
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#define MAX_BIOSLEN (128 * 1024L)
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/* Define some useful types and macros */
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#define true 1
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#define false 0
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/* Place to save PCI BAR's that we change and later restore */
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static u32 saveROMBaseAddress;
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static u32 saveBaseAddress10;
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static u32 saveBaseAddress14;
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static u32 saveBaseAddress18;
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static u32 saveBaseAddress20;
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/****************************************************************************
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PARAMETERS:
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pcidev - PCI device info for the video card on the bus to boot
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VGAInfo - BIOS emulator VGA info structure
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REMARKS:
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This function executes the BIOS POST code on the controller. We assume that
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at this stage the controller has its I/O and memory space enabled and
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that all other controllers are in a disabled state.
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****************************************************************************/
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static void PCI_doBIOSPOST(pci_dev_t pcidev, BE_VGAInfo * VGAInfo)
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{
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RMREGS regs;
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RMSREGS sregs;
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/* Determine the value to store in AX for BIOS POST. Per the PCI specs,
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AH must contain the bus and AL must contain the devfn, encoded as
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(dev << 3) | fn
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*/
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memset(®s, 0, sizeof(regs));
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memset(&sregs, 0, sizeof(sregs));
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regs.x.ax = ((int)PCI_BUS(pcidev) << 8) |
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((int)PCI_DEV(pcidev) << 3) | (int)PCI_FUNC(pcidev);
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/*Setup the X86 emulator for the VGA BIOS*/
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BE_setVGA(VGAInfo);
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/*Execute the BIOS POST code*/
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BE_callRealMode(0xC000, 0x0003, ®s, &sregs);
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/*Cleanup and exit*/
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BE_getVGA(VGAInfo);
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}
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/****************************************************************************
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PARAMETERS:
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pcidev - PCI device info for the video card on the bus
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bar - Place to return the base address register offset to use
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RETURNS:
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The address to use to map the secondary BIOS (AGP devices)
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REMARKS:
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Searches all the PCI base address registers for the device looking for a
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memory mapping that is large enough to hold our ROM BIOS. We usually end up
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finding the framebuffer mapping (usually BAR 0x10), and we use this mapping
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to map the BIOS for the device into. We use a mapping that is already
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assigned to the device to ensure the memory range will be passed through
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by any PCI->PCI or AGP->PCI bridge that may be present.
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NOTE: Usually this function is only used for AGP devices, but it may be
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used for PCI devices that have already been POST'ed and the BIOS
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ROM base address has been zero'ed out.
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NOTE: This function leaves the original memory aperture disabled by leaving
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it programmed to all 1's. It must be restored to the correct value
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later.
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****************************************************************************/
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static u32 PCI_findBIOSAddr(pci_dev_t pcidev, int *bar)
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{
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u32 base, size;
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for (*bar = 0x10; *bar <= 0x14; (*bar) += 4) {
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pci_read_config_dword(pcidev, *bar, &base);
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if (!(base & 0x1)) {
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pci_write_config_dword(pcidev, *bar, 0xFFFFFFFF);
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pci_read_config_dword(pcidev, *bar, &size);
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size = ~(size & ~0xFF) + 1;
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if (size >= MAX_BIOSLEN)
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return base & ~0xFF;
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}
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}
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return 0;
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}
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/****************************************************************************
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REMARKS:
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Some non-x86 Linux kernels map PCI relocateable I/O to values that
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are above 64K, which will not work with the BIOS image that requires
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the offset for the I/O ports to be a maximum of 16-bits. Ideally
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someone should fix the kernel to map the I/O ports for VGA compatible
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devices to a different location (or just all I/O ports since it is
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unlikely you can have enough devices in the machine to use up all
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64K of the I/O space - a total of more than 256 cards would be
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necessary).
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Anyway to fix this we change all I/O mapped base registers and
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chop off the top bits.
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****************************************************************************/
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static void PCI_fixupIObase(pci_dev_t pcidev, int reg, u32 * base)
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{
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if ((*base & 0x1) && (*base > 0xFFFE)) {
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*base &= 0xFFFF;
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pci_write_config_dword(pcidev, reg, *base);
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}
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}
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/****************************************************************************
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PARAMETERS:
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pcidev - PCI device info for the video card on the bus
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RETURNS:
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Pointers to the mapped BIOS image
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REMARKS:
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Maps a pointer to the BIOS image on the graphics card on the PCI bus.
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****************************************************************************/
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void *PCI_mapBIOSImage(pci_dev_t pcidev)
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{
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u32 BIOSImageBus;
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int BIOSImageBAR;
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u8 *BIOSImage;
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/*Save PCI BAR registers that might get changed*/
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pci_read_config_dword(pcidev, PCI_ROM_ADDRESS, &saveROMBaseAddress);
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pci_read_config_dword(pcidev, PCI_BASE_ADDRESS_0, &saveBaseAddress10);
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pci_read_config_dword(pcidev, PCI_BASE_ADDRESS_1, &saveBaseAddress14);
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pci_read_config_dword(pcidev, PCI_BASE_ADDRESS_2, &saveBaseAddress18);
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pci_read_config_dword(pcidev, PCI_BASE_ADDRESS_4, &saveBaseAddress20);
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/*Fix up I/O base registers to less than 64K */
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if(saveBaseAddress14 != 0)
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PCI_fixupIObase(pcidev, PCI_BASE_ADDRESS_1, &saveBaseAddress14);
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else
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PCI_fixupIObase(pcidev, PCI_BASE_ADDRESS_4, &saveBaseAddress20);
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/* Some cards have problems that stop us from being able to read the
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BIOS image from the ROM BAR. To fix this we have to do some chipset
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specific programming for different cards to solve this problem.
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*/
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BIOSImageBus = PCI_findBIOSAddr(pcidev, &BIOSImageBAR);
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if (BIOSImageBus == 0) {
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printf("Find bios addr error\n");
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return NULL;
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}
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BIOSImage = pci_bus_to_virt(pcidev, BIOSImageBus,
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PCI_REGION_MEM, 0, MAP_NOCACHE);
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/*Change the PCI BAR registers to map it onto the bus.*/
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pci_write_config_dword(pcidev, BIOSImageBAR, 0);
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pci_write_config_dword(pcidev, PCI_ROM_ADDRESS, BIOSImageBus | 0x1);
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udelay(1);
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/*Check that the BIOS image is valid. If not fail, or return the
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compiled in BIOS image if that option was enabled
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*/
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if (BIOSImage[0] != 0x55 || BIOSImage[1] != 0xAA || BIOSImage[2] == 0) {
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return NULL;
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}
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return BIOSImage;
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}
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/****************************************************************************
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PARAMETERS:
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pcidev - PCI device info for the video card on the bus
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REMARKS:
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Unmaps the BIOS image for the device and restores framebuffer mappings
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****************************************************************************/
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void PCI_unmapBIOSImage(pci_dev_t pcidev, void *BIOSImage)
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{
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pci_write_config_dword(pcidev, PCI_ROM_ADDRESS, saveROMBaseAddress);
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pci_write_config_dword(pcidev, PCI_BASE_ADDRESS_0, saveBaseAddress10);
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pci_write_config_dword(pcidev, PCI_BASE_ADDRESS_1, saveBaseAddress14);
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pci_write_config_dword(pcidev, PCI_BASE_ADDRESS_2, saveBaseAddress18);
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pci_write_config_dword(pcidev, PCI_BASE_ADDRESS_4, saveBaseAddress20);
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}
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/****************************************************************************
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PARAMETERS:
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pcidev - PCI device info for the video card on the bus to boot
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VGAInfo - BIOS emulator VGA info structure
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RETURNS:
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True if successfully initialised, false if not.
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REMARKS:
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Loads and POST's the display controllers BIOS, directly from the BIOS
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image we can extract over the PCI bus.
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****************************************************************************/
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static int PCI_postController(pci_dev_t pcidev, BE_VGAInfo * VGAInfo)
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{
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u32 BIOSImageLen;
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uchar *mappedBIOS;
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uchar *copyOfBIOS;
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/*Allocate memory to store copy of BIOS from display controller*/
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if ((mappedBIOS = PCI_mapBIOSImage(pcidev)) == NULL) {
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printf("videoboot: Video ROM failed to map!\n");
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return false;
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}
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BIOSImageLen = mappedBIOS[2] * 512;
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if ((copyOfBIOS = malloc(BIOSImageLen)) == NULL) {
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printf("videoboot: Out of memory!\n");
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return false;
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}
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memcpy(copyOfBIOS, mappedBIOS, BIOSImageLen);
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PCI_unmapBIOSImage(pcidev, mappedBIOS);
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/*Save information in VGAInfo structure*/
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VGAInfo->function = PCI_FUNC(pcidev);
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VGAInfo->device = PCI_DEV(pcidev);
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VGAInfo->bus = PCI_BUS(pcidev);
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VGAInfo->pcidev = pcidev;
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VGAInfo->BIOSImage = copyOfBIOS;
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VGAInfo->BIOSImageLen = BIOSImageLen;
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/*Now execute the BIOS POST for the device*/
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if (copyOfBIOS[0] != 0x55 || copyOfBIOS[1] != 0xAA) {
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printf("videoboot: Video ROM image is invalid!\n");
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return false;
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}
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PCI_doBIOSPOST(pcidev, VGAInfo);
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/*Reset the size of the BIOS image to the final size*/
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VGAInfo->BIOSImageLen = copyOfBIOS[2] * 512;
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return true;
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}
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/****************************************************************************
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PARAMETERS:
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pcidev - PCI device info for the video card on the bus to boot
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pVGAInfo - Place to return VGA info structure is requested
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cleanUp - True to clean up on exit, false to leave emulator active
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REMARKS:
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Boots the PCI/AGP video card on the bus using the Video ROM BIOS image
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and the X86 BIOS emulator module.
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****************************************************************************/
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int BootVideoCardBIOS(pci_dev_t pcidev, BE_VGAInfo ** pVGAInfo, int cleanUp)
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{
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BE_VGAInfo *VGAInfo;
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printf("videoboot: Booting PCI video card bus %d, function %d, device %d\n",
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PCI_BUS(pcidev), PCI_FUNC(pcidev), PCI_DEV(pcidev));
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/*Initialise the x86 BIOS emulator*/
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if ((VGAInfo = malloc(sizeof(*VGAInfo))) == NULL) {
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printf("videoboot: Out of memory!\n");
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return false;
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}
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memset(VGAInfo, 0, sizeof(*VGAInfo));
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BE_init(0, 65536, VGAInfo, 0);
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/*Post all the display controller BIOS'es*/
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if (!PCI_postController(pcidev, VGAInfo))
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return false;
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/*Cleanup and exit the emulator if requested. If the BIOS emulator
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is needed after booting the card, we will not call BE_exit and
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leave it enabled for further use (ie: VESA driver etc).
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*/
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if (cleanUp) {
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BE_exit();
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if (VGAInfo->BIOSImage)
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free(VGAInfo->BIOSImage);
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free(VGAInfo);
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VGAInfo = NULL;
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}
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/*Return VGA info pointer if the caller requested it*/
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if (pVGAInfo)
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*pVGAInfo = VGAInfo;
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return true;
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}
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