d44221f9c8
Its spreading copies got out of sync. And as it is not a standard header but used in commonlib code, it belongs into commonlib. While we are at it, always include it via GCC's `-include` switch. Some Windows and BSD quirk handling went into the util copies. We always guard from redefinitions now to prevent further issues. Change-Id: I850414e6db1d799dce71ff2dc044e6a000ad2552 Signed-off-by: Nico Huber <nico.h@gmx.de> Reviewed-on: https://review.coreboot.org/28927 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Aaron Durbin <adurbin@chromium.org>
327 lines
9.2 KiB
C
327 lines
9.2 KiB
C
/*
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* This file is part of the coreboot project.
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*
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* Copyright (C) 2005 Li-Ta Lo <ollie@lanl.gov>
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* Copyright (C) 2005 Tyan
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* (Written by Yinghai Lu <yhlu@tyan.com> for Tyan)
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* Copyright (C) 2005 Ronald G. Minnich <rminnich@gmail.com>
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* Copyright (C) 2005-2007 Stefan Reinauer <stepan@openbios.org>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; version 2 of the License.
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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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#include <console/console.h>
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#include <commonlib/endian.h>
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#include <device/device.h>
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#include <device/pci.h>
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#include <device/pci_ids.h>
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#include <device/pci_ops.h>
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#include <string.h>
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#include <cbfs.h>
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#include <cbmem.h>
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#include <arch/acpigen.h>
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/* Rmodules don't like weak symbols. */
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u32 __weak map_oprom_vendev(u32 vendev) { return vendev; }
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struct rom_header *pci_rom_probe(struct device *dev)
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{
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struct rom_header *rom_header;
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struct pci_data *rom_data;
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/* If it's in FLASH, then don't check device for ROM. */
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rom_header = cbfs_boot_map_optionrom(dev->vendor, dev->device);
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u32 vendev = (dev->vendor << 16) | dev->device;
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u32 mapped_vendev;
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mapped_vendev = map_oprom_vendev(vendev);
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if (!rom_header) {
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if (vendev != mapped_vendev) {
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rom_header = cbfs_boot_map_optionrom(
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mapped_vendev >> 16,
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mapped_vendev & 0xffff);
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}
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}
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if (rom_header) {
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printk(BIOS_DEBUG, "In CBFS, ROM address for %s = %p\n",
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dev_path(dev), rom_header);
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} else if (!IS_ENABLED(CONFIG_ON_DEVICE_ROM_LOAD)) {
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printk(BIOS_DEBUG, "PCI Option ROM loading disabled "
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"for %s\n", dev_path(dev));
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return NULL;
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} else {
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uintptr_t rom_address;
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rom_address = pci_read_config32(dev, PCI_ROM_ADDRESS);
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if (rom_address == 0x00000000 || rom_address == 0xffffffff) {
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#if IS_ENABLED(CONFIG_BOARD_EMULATION_QEMU_X86)
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if ((dev->class >> 8) == PCI_CLASS_DISPLAY_VGA)
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rom_address = 0xc0000;
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else
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#endif
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return NULL;
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} else {
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/* Enable expansion ROM address decoding. */
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pci_write_config32(dev, PCI_ROM_ADDRESS,
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rom_address|PCI_ROM_ADDRESS_ENABLE);
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}
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printk(BIOS_DEBUG, "Option ROM address for %s = %lx\n",
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dev_path(dev), (unsigned long)rom_address);
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rom_header = (struct rom_header *)rom_address;
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}
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printk(BIOS_SPEW, "PCI expansion ROM, signature 0x%04x, "
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"INIT size 0x%04x, data ptr 0x%04x\n",
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le32_to_cpu(rom_header->signature),
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rom_header->size * 512, le32_to_cpu(rom_header->data));
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if (le32_to_cpu(rom_header->signature) != PCI_ROM_HDR) {
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printk(BIOS_ERR, "Incorrect expansion ROM header "
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"signature %04x\n", le32_to_cpu(rom_header->signature));
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return NULL;
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}
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rom_data = (((void *)rom_header) + le32_to_cpu(rom_header->data));
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printk(BIOS_SPEW, "PCI ROM image, vendor ID %04x, device ID %04x,\n",
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rom_data->vendor, rom_data->device);
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/* If the device id is mapped, a mismatch is expected */
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if ((dev->vendor != rom_data->vendor
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|| dev->device != rom_data->device)
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&& (vendev == mapped_vendev)) {
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printk(BIOS_ERR, "ID mismatch: vendor ID %04x, "
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"device ID %04x\n", rom_data->vendor, rom_data->device);
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return NULL;
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}
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printk(BIOS_SPEW, "PCI ROM image, Class Code %04x%02x, "
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"Code Type %02x\n", rom_data->class_hi, rom_data->class_lo,
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rom_data->type);
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if (dev->class != ((rom_data->class_hi << 8) | rom_data->class_lo)) {
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printk(BIOS_DEBUG, "Class Code mismatch ROM %08x, dev %08x\n",
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(rom_data->class_hi << 8) | rom_data->class_lo,
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dev->class);
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// return NULL;
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}
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return rom_header;
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}
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static void *pci_ram_image_start = (void *)PCI_RAM_IMAGE_START;
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struct rom_header *pci_rom_load(struct device *dev,
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struct rom_header *rom_header)
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{
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struct pci_data * rom_data;
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unsigned int rom_size;
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unsigned int image_size=0;
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do {
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/* Get next image. */
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rom_header = (struct rom_header *)((void *) rom_header
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+ image_size);
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rom_data = (struct pci_data *)((void *) rom_header
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+ le32_to_cpu(rom_header->data));
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image_size = le32_to_cpu(rom_data->ilen) * 512;
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} while ((rom_data->type != 0) && (rom_data->indicator != 0)); // make sure we got x86 version
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if (rom_data->type != 0)
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return NULL;
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rom_size = rom_header->size * 512;
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/*
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* We check to see if the device thinks it is a VGA device not
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* whether the ROM image is for a VGA device because some
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* devices have a mismatch between the hardware and the ROM.
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*/
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if (PCI_CLASS_DISPLAY_VGA == (dev->class >> 8)) {
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#if !IS_ENABLED(CONFIG_MULTIPLE_VGA_ADAPTERS)
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extern struct device *vga_pri; /* Primary VGA device (device.c). */
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if (dev != vga_pri) return NULL; /* Only one VGA supported. */
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#endif
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if ((void *)PCI_VGA_RAM_IMAGE_START != rom_header) {
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printk(BIOS_DEBUG, "Copying VGA ROM Image from %p to "
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"0x%x, 0x%x bytes\n", rom_header,
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PCI_VGA_RAM_IMAGE_START, rom_size);
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memcpy((void *)PCI_VGA_RAM_IMAGE_START, rom_header,
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rom_size);
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}
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return (struct rom_header *) (PCI_VGA_RAM_IMAGE_START);
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}
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printk(BIOS_DEBUG, "Copying non-VGA ROM image from %p to %p, 0x%x "
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"bytes\n", rom_header, pci_ram_image_start, rom_size);
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memcpy(pci_ram_image_start, rom_header, rom_size);
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pci_ram_image_start += rom_size;
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return (struct rom_header *) (pci_ram_image_start-rom_size);
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}
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/* ACPI */
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#if IS_ENABLED(CONFIG_HAVE_ACPI_TABLES)
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/* VBIOS may be modified after oprom init so use the copy if present. */
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static struct rom_header *check_initialized(struct device *dev)
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{
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struct rom_header *run_rom;
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struct pci_data *rom_data;
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if (!IS_ENABLED(CONFIG_VGA_ROM_RUN))
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return NULL;
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run_rom = (struct rom_header *)(uintptr_t)PCI_VGA_RAM_IMAGE_START;
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if (read_le16(&run_rom->signature) != PCI_ROM_HDR)
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return NULL;
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rom_data = (struct pci_data *)((u8 *)run_rom
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+ read_le32(&run_rom->data));
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if (read_le32(&rom_data->signature) == PCI_DATA_HDR
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&& read_le16(&rom_data->device) == dev->device
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&& read_le16(&rom_data->vendor) == dev->vendor)
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return run_rom;
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else
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return NULL;
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}
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static unsigned long
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pci_rom_acpi_fill_vfct(struct device *device, struct acpi_vfct *vfct_struct,
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unsigned long current)
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{
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struct acpi_vfct_image_hdr *header = &vfct_struct->image_hdr;
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struct rom_header *rom;
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vfct_struct->VBIOSImageOffset = (size_t)header - (size_t)vfct_struct;
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rom = check_initialized(device);
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if (!rom)
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rom = pci_rom_probe(device);
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if (!rom) {
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printk(BIOS_ERR, "pci_rom_acpi_fill_vfct failed\n");
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return current;
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}
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printk(BIOS_DEBUG, " Copying %sVBIOS image from %p\n",
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rom == (struct rom_header *)
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(uintptr_t)PCI_VGA_RAM_IMAGE_START ?
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"initialized " : "",
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rom);
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header->DeviceID = device->device;
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header->VendorID = device->vendor;
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header->PCIBus = device->bus->secondary;
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header->PCIFunction = PCI_FUNC(device->path.pci.devfn);
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header->PCIDevice = PCI_SLOT(device->path.pci.devfn);
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header->ImageLength = rom->size * 512;
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memcpy((void *)&header->VbiosContent, rom, header->ImageLength);
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current += header->ImageLength;
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return current;
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}
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unsigned long
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pci_rom_write_acpi_tables(struct device *device, unsigned long current,
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struct acpi_rsdp *rsdp)
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{
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struct acpi_vfct *vfct;
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struct rom_header *rom;
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/* Only handle VGA devices */
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if ((device->class >> 8) != PCI_CLASS_DISPLAY_VGA)
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return current;
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/* Only handle enabled devices */
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if (!device->enabled)
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return current;
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/* Probe for option rom */
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rom = pci_rom_probe(device);
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if (!rom)
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return current;
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/* AMD/ATI uses VFCT */
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if (device->vendor == PCI_VENDOR_ID_ATI) {
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current = ALIGN(current, 8);
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printk(BIOS_DEBUG, "ACPI: * VFCT at %lx\n", current);
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vfct = (struct acpi_vfct *)current;
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acpi_create_vfct(device, vfct, pci_rom_acpi_fill_vfct);
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current += vfct->header.length;
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acpi_add_table(rsdp, vfct);
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}
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return current;
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}
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void pci_rom_ssdt(struct device *device)
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{
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static size_t ngfx;
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/* Only handle VGA devices */
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if ((device->class >> 8) != PCI_CLASS_DISPLAY_VGA)
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return;
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/* Only handle enabled devices */
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if (!device->enabled)
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return;
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/* Probe for option rom */
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const struct rom_header *rom = pci_rom_probe(device);
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if (!rom || !rom->size) {
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printk(BIOS_WARNING, "%s: Missing PCI Option ROM\n",
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dev_path(device));
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return;
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}
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const char *scope = acpi_device_path(device);
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if (!scope) {
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printk(BIOS_ERR, "%s: Missing ACPI scope\n", dev_path(device));
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return;
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}
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/* Supports up to four devices. */
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if ((CBMEM_ID_ROM0 + ngfx) > CBMEM_ID_ROM3) {
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printk(BIOS_ERR, "%s: Out of CBMEM IDs.\n", dev_path(device));
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return;
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}
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/* Prepare memory */
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const size_t cbrom_length = rom->size * 512;
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if (!cbrom_length) {
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printk(BIOS_ERR, "%s: ROM has zero length!\n",
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dev_path(device));
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return;
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}
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void *cbrom = cbmem_add(CBMEM_ID_ROM0 + ngfx, cbrom_length);
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if (!cbrom) {
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printk(BIOS_ERR, "%s: Failed to allocate CBMEM.\n",
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dev_path(device));
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return;
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}
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/* Increment CBMEM id for next device */
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ngfx++;
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memcpy(cbrom, rom, cbrom_length);
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/* write _ROM method */
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acpigen_write_scope(scope);
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acpigen_write_rom(cbrom, cbrom_length);
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acpigen_pop_len(); /* pop scope */
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}
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#endif
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