549 lines
14 KiB
C
549 lines
14 KiB
C
/*
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* This file is part of the coreboot project.
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*
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* Copyright (C) 2003-2004 Eric Biederman
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* Copyright (C) 2005-2010 coresystems GmbH
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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; version 2 of
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* 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 <console/uart.h>
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#include <ip_checksum.h>
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#include <boot/coreboot_tables.h>
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#include <boot_device.h>
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#include <string.h>
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#include <version.h>
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#include <boardid.h>
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#include <device/device.h>
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#include <fmap.h>
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#include <stdlib.h>
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#include <cbfs.h>
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#include <cbmem.h>
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#include <bootmem.h>
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#include <spi_flash.h>
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#if CONFIG_USE_OPTION_TABLE
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#include <option_table.h>
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#endif
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#if CONFIG_CHROMEOS
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#if CONFIG_HAVE_ACPI_TABLES
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#include <arch/acpi.h>
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#endif
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#include <vendorcode/google/chromeos/chromeos.h>
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#include <vendorcode/google/chromeos/gnvs.h>
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#include <vendorcode/google/chromeos/vbnv_layout.h>
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#endif
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#if CONFIG_ARCH_X86
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#include <cpu/x86/mtrr.h>
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#endif
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static struct lb_header *lb_table_init(unsigned long addr)
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{
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struct lb_header *header;
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/* 16 byte align the address */
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addr += 15;
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addr &= ~15;
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header = (void *)addr;
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header->signature[0] = 'L';
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header->signature[1] = 'B';
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header->signature[2] = 'I';
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header->signature[3] = 'O';
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header->header_bytes = sizeof(*header);
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header->header_checksum = 0;
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header->table_bytes = 0;
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header->table_checksum = 0;
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header->table_entries = 0;
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return header;
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}
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static struct lb_record *lb_first_record(struct lb_header *header)
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{
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struct lb_record *rec;
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rec = (void *)(((char *)header) + sizeof(*header));
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return rec;
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}
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static struct lb_record *lb_last_record(struct lb_header *header)
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{
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struct lb_record *rec;
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rec = (void *)(((char *)header) + sizeof(*header) + header->table_bytes);
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return rec;
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}
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struct lb_record *lb_new_record(struct lb_header *header)
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{
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struct lb_record *rec;
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rec = lb_last_record(header);
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if (header->table_entries) {
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header->table_bytes += rec->size;
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}
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rec = lb_last_record(header);
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header->table_entries++;
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rec->tag = LB_TAG_UNUSED;
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rec->size = sizeof(*rec);
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return rec;
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}
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static struct lb_memory *lb_memory(struct lb_header *header)
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{
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struct lb_record *rec;
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struct lb_memory *mem;
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rec = lb_new_record(header);
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mem = (struct lb_memory *)rec;
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mem->tag = LB_TAG_MEMORY;
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mem->size = sizeof(*mem);
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return mem;
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}
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void lb_add_serial(struct lb_serial *new_serial, void *data)
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{
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struct lb_header *header = (struct lb_header *)data;
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struct lb_serial *serial;
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serial = (struct lb_serial *)lb_new_record(header);
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serial->tag = LB_TAG_SERIAL;
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serial->size = sizeof(*serial);
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serial->type = new_serial->type;
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serial->baseaddr = new_serial->baseaddr;
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serial->baud = new_serial->baud;
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serial->regwidth = new_serial->regwidth;
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}
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void lb_add_console(uint16_t consoletype, void *data)
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{
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struct lb_header *header = (struct lb_header *)data;
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struct lb_console *console;
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console = (struct lb_console *)lb_new_record(header);
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console->tag = LB_TAG_CONSOLE;
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console->size = sizeof(*console);
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console->type = consoletype;
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}
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void __attribute__((weak)) lb_framebuffer(struct lb_header *header)
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{
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#if CONFIG_FRAMEBUFFER_KEEP_VESA_MODE || CONFIG_MAINBOARD_DO_NATIVE_VGA_INIT
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void fill_lb_framebuffer(struct lb_framebuffer *framebuffer);
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int vbe_mode_info_valid(void);
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// If there isn't any mode info to put in the table, don't ask for it
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// to be filled with junk.
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if (!vbe_mode_info_valid())
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return;
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struct lb_framebuffer *framebuffer;
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framebuffer = (struct lb_framebuffer *)lb_new_record(header);
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fill_lb_framebuffer(framebuffer);
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framebuffer->tag = LB_TAG_FRAMEBUFFER;
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framebuffer->size = sizeof(*framebuffer);
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#endif
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}
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void fill_lb_gpio(struct lb_gpio *gpio, int num,
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int polarity, const char *name, int value)
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{
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memset(gpio, 0, sizeof(*gpio));
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gpio->port = num;
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gpio->polarity = polarity;
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if (value >= 0)
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gpio->value = value;
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strncpy((char *)gpio->name, name, GPIO_MAX_NAME_LENGTH);
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}
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#if CONFIG_CHROMEOS
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static void lb_gpios(struct lb_header *header)
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{
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struct lb_gpios *gpios;
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gpios = (struct lb_gpios *)lb_new_record(header);
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gpios->tag = LB_TAG_GPIO;
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gpios->size = sizeof(*gpios);
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gpios->count = 0;
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fill_lb_gpios(gpios);
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}
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static void lb_vdat(struct lb_header *header)
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{
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#if CONFIG_HAVE_ACPI_TABLES
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struct lb_range *vdat;
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vdat = (struct lb_range *)lb_new_record(header);
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vdat->tag = LB_TAG_VDAT;
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vdat->size = sizeof(*vdat);
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acpi_get_vdat_info(&vdat->range_start, &vdat->range_size);
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#endif
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}
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static void lb_vbnv(struct lb_header *header)
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{
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#if CONFIG_PC80_SYSTEM
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struct lb_range *vbnv;
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vbnv = (struct lb_range *)lb_new_record(header);
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vbnv->tag = LB_TAG_VBNV;
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vbnv->size = sizeof(*vbnv);
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vbnv->range_start = CONFIG_VBNV_OFFSET + 14;
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vbnv->range_size = VBNV_BLOCK_SIZE;
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#endif
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}
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#if CONFIG_VBOOT_VERIFY_FIRMWARE
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static void lb_vboot_handoff(struct lb_header *header)
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{
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void *addr;
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uint32_t size;
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struct lb_range *vbho;
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if (vboot_get_handoff_info(&addr, &size))
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return;
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vbho = (struct lb_range *)lb_new_record(header);
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vbho->tag = LB_TAB_VBOOT_HANDOFF;
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vbho->size = sizeof(*vbho);
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vbho->range_start = (intptr_t)addr;
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vbho->range_size = size;
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}
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#else
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static inline void lb_vboot_handoff(struct lb_header *header) {}
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#endif /* CONFIG_VBOOT_VERIFY_FIRMWARE */
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#endif /* CONFIG_CHROMEOS */
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static void lb_board_id(struct lb_header *header)
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{
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#if CONFIG_BOARD_ID_AUTO || CONFIG_BOARD_ID_MANUAL
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struct lb_board_id *bid;
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bid = (struct lb_board_id *)lb_new_record(header);
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bid->tag = LB_TAG_BOARD_ID;
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bid->size = sizeof(*bid);
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bid->board_id = board_id();
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#endif
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}
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static void lb_boot_media_params(struct lb_header *header)
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{
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struct lb_boot_media_params *bmp;
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struct cbfs_props props;
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const struct region_device *boot_dev;
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struct region_device fmrd;
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boot_device_init();
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if (cbfs_boot_region_properties(&props))
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return;
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boot_dev = boot_device_ro();
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if (boot_dev == NULL)
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return;
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bmp = (struct lb_boot_media_params *)lb_new_record(header);
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bmp->tag = LB_TAG_BOOT_MEDIA_PARAMS;
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bmp->size = sizeof(*bmp);
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bmp->cbfs_offset = props.offset;
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bmp->cbfs_size = props.size;
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bmp->boot_media_size = region_device_sz(boot_dev);
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bmp->fmap_offset = ~(uint64_t)0;
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if (find_fmap_directory(&fmrd) == 0) {
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bmp->fmap_offset = region_device_offset(&fmrd);
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}
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}
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static void lb_ram_code(struct lb_header *header)
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{
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#if IS_ENABLED(CONFIG_RAM_CODE_SUPPORT)
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struct lb_ram_code *code;
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code = (struct lb_ram_code *)lb_new_record(header);
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code->tag = LB_TAG_RAM_CODE;
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code->size = sizeof(*code);
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code->ram_code = ram_code();
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#endif
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}
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static void add_cbmem_pointers(struct lb_header *header)
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{
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/*
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* These CBMEM sections' addresses are included in the coreboot table
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* with the appropriate tags.
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*/
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const struct section_id {
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int cbmem_id;
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int table_tag;
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} section_ids[] = {
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{CBMEM_ID_TIMESTAMP, LB_TAG_TIMESTAMPS},
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{CBMEM_ID_CONSOLE, LB_TAG_CBMEM_CONSOLE},
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{CBMEM_ID_ACPI_GNVS, LB_TAG_ACPI_GNVS},
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{CBMEM_ID_VPD, LB_TAG_VPD},
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{CBMEM_ID_WIFI_CALIBRATION, LB_TAG_WIFI_CALIBRATION}
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};
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int i;
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for (i = 0; i < ARRAY_SIZE(section_ids); i++) {
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const struct section_id *sid = section_ids + i;
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struct lb_cbmem_ref *cbmem_ref;
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void *cbmem_addr = cbmem_find(sid->cbmem_id);
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if (!cbmem_addr)
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continue; /* This section is not present */
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cbmem_ref = (struct lb_cbmem_ref *)lb_new_record(header);
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if (!cbmem_ref) {
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printk(BIOS_ERR, "No more room in coreboot table!\n");
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break;
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}
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cbmem_ref->tag = sid->table_tag;
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cbmem_ref->size = sizeof(*cbmem_ref);
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cbmem_ref->cbmem_addr = (unsigned long)cbmem_addr;
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}
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}
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static struct lb_mainboard *lb_mainboard(struct lb_header *header)
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{
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struct lb_record *rec;
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struct lb_mainboard *mainboard;
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rec = lb_new_record(header);
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mainboard = (struct lb_mainboard *)rec;
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mainboard->tag = LB_TAG_MAINBOARD;
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mainboard->size = (sizeof(*mainboard) +
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strlen(mainboard_vendor) + 1 +
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strlen(mainboard_part_number) + 1 +
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3) & ~3;
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mainboard->vendor_idx = 0;
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mainboard->part_number_idx = strlen(mainboard_vendor) + 1;
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memcpy(mainboard->strings + mainboard->vendor_idx,
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mainboard_vendor, strlen(mainboard_vendor) + 1);
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memcpy(mainboard->strings + mainboard->part_number_idx,
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mainboard_part_number, strlen(mainboard_part_number) + 1);
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return mainboard;
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}
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#if CONFIG_USE_OPTION_TABLE
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static struct cmos_checksum *lb_cmos_checksum(struct lb_header *header)
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{
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struct lb_record *rec;
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struct cmos_checksum *cmos_checksum;
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rec = lb_new_record(header);
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cmos_checksum = (struct cmos_checksum *)rec;
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cmos_checksum->tag = LB_TAG_OPTION_CHECKSUM;
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cmos_checksum->size = (sizeof(*cmos_checksum));
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cmos_checksum->range_start = LB_CKS_RANGE_START * 8;
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cmos_checksum->range_end = ( LB_CKS_RANGE_END * 8 ) + 7;
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cmos_checksum->location = LB_CKS_LOC * 8;
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cmos_checksum->type = CHECKSUM_PCBIOS;
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return cmos_checksum;
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}
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#endif
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static void lb_strings(struct lb_header *header)
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{
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static const struct {
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uint32_t tag;
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const char *string;
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} strings[] = {
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{ LB_TAG_VERSION, coreboot_version, },
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{ LB_TAG_EXTRA_VERSION, coreboot_extra_version, },
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{ LB_TAG_BUILD, coreboot_build, },
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{ LB_TAG_COMPILE_TIME, coreboot_compile_time, },
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};
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unsigned int i;
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for(i = 0; i < ARRAY_SIZE(strings); i++) {
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struct lb_string *rec;
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size_t len;
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rec = (struct lb_string *)lb_new_record(header);
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len = strlen(strings[i].string);
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rec->tag = strings[i].tag;
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rec->size = (sizeof(*rec) + len + 1 + 3) & ~3;
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memcpy(rec->string, strings[i].string, len+1);
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}
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}
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static void lb_record_version_timestamp(struct lb_header *header)
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{
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struct lb_timestamp *rec;
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rec = (struct lb_timestamp *)lb_new_record(header);
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rec->tag = LB_TAG_VERSION_TIMESTAMP;
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rec->size = sizeof(*rec);
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rec->timestamp = coreboot_version_timestamp;
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}
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void __attribute__((weak)) lb_board(struct lb_header *header) { /* NOOP */ }
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static struct lb_forward *lb_forward(struct lb_header *header, struct lb_header *next_header)
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{
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struct lb_record *rec;
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struct lb_forward *forward;
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rec = lb_new_record(header);
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forward = (struct lb_forward *)rec;
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forward->tag = LB_TAG_FORWARD;
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forward->size = sizeof(*forward);
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forward->forward = (uint64_t)(unsigned long)next_header;
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return forward;
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}
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static unsigned long lb_table_fini(struct lb_header *head)
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{
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struct lb_record *rec, *first_rec;
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rec = lb_last_record(head);
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if (head->table_entries) {
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head->table_bytes += rec->size;
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}
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first_rec = lb_first_record(head);
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head->table_checksum = compute_ip_checksum(first_rec, head->table_bytes);
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head->header_checksum = 0;
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head->header_checksum = compute_ip_checksum(head, sizeof(*head));
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printk(BIOS_DEBUG,
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"Wrote coreboot table at: %p, 0x%x bytes, checksum %x\n",
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head, head->table_bytes, head->table_checksum);
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return (unsigned long)rec + rec->size;
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}
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unsigned long write_coreboot_table(
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unsigned long low_table_start, unsigned long low_table_end,
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unsigned long rom_table_start, unsigned long rom_table_end)
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{
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struct lb_header *head;
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if (low_table_start || low_table_end) {
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printk(BIOS_DEBUG, "Writing table forward entry at 0x%08lx\n",
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low_table_end);
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head = lb_table_init(low_table_end);
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lb_forward(head, (struct lb_header*)rom_table_end);
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low_table_end = (unsigned long) lb_table_fini(head);
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printk(BIOS_DEBUG, "Table forward entry ends at 0x%08lx.\n",
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low_table_end);
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low_table_end = ALIGN(low_table_end, 4096);
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printk(BIOS_DEBUG, "... aligned to 0x%08lx\n", low_table_end);
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}
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printk(BIOS_DEBUG, "Writing coreboot table at 0x%08lx\n",
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rom_table_end);
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head = lb_table_init(rom_table_end);
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rom_table_end = (unsigned long)head;
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printk(BIOS_DEBUG, "rom_table_end = 0x%08lx\n", rom_table_end);
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rom_table_end = ALIGN(rom_table_end, (64 * 1024));
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printk(BIOS_DEBUG, "... aligned to 0x%08lx\n", rom_table_end);
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#if CONFIG_USE_OPTION_TABLE
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{
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struct cmos_option_table *option_table =
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cbfs_boot_map_with_leak("cmos_layout.bin",
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CBFS_COMPONENT_CMOS_LAYOUT, NULL);
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if (option_table) {
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struct lb_record *rec_dest = lb_new_record(head);
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/* Copy the option config table, it's already a lb_record... */
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memcpy(rec_dest, option_table, option_table->size);
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/* Create cmos checksum entry in coreboot table */
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lb_cmos_checksum(head);
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} else {
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printk(BIOS_ERR, "cmos_layout.bin could not be found!\n");
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}
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}
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#endif
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/* Initialize the memory map at boot time. */
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bootmem_init();
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if (low_table_start || low_table_end) {
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uint64_t size = low_table_end - low_table_start;
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/* Record the mptable and the the lb_table.
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* (This will be adjusted later) */
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bootmem_add_range(low_table_start, size, LB_MEM_TABLE);
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}
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/* Record the pirq table, acpi tables, and maybe the mptable. However,
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* these only need to be added when the rom_table is sitting below
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* 1MiB. If it isn't that means high tables are being written.
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* The code below handles high tables correctly. */
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if (rom_table_end <= (1 << 20)) {
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uint64_t size = rom_table_end - rom_table_start;
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bootmem_add_range(rom_table_start, size, LB_MEM_TABLE);
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}
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/* No other memory areas can be added after the memory table has been
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* committed as the entries won't show up in the serialize mem table. */
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bootmem_write_memory_table(lb_memory(head));
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/* Record our motherboard */
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lb_mainboard(head);
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/* Record the serial ports and consoles */
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#if CONFIG_CONSOLE_SERIAL
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uart_fill_lb(head);
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#endif
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#if CONFIG_CONSOLE_USB
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lb_add_console(LB_TAG_CONSOLE_EHCI, head);
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#endif
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/* Record our various random string information */
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lb_strings(head);
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lb_record_version_timestamp(head);
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|
/* Record our framebuffer */
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|
lb_framebuffer(head);
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|
|
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#if CONFIG_CHROMEOS
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/* Record our GPIO settings (ChromeOS specific) */
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|
lb_gpios(head);
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|
|
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/* pass along the VDAT buffer address */
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|
lb_vdat(head);
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|
|
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/* pass along VBNV offsets in CMOS */
|
|
lb_vbnv(head);
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|
|
|
/* pass along the vboot_handoff address. */
|
|
lb_vboot_handoff(head);
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|
#endif
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|
|
|
/* Add board ID if available */
|
|
lb_board_id(head);
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|
|
|
/* Add RAM config if available */
|
|
lb_ram_code(head);
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|
|
|
#if IS_ENABLED(CONFIG_SPI_FLASH)
|
|
/* Add SPI flash description if available */
|
|
lb_spi_flash(head);
|
|
#endif
|
|
|
|
add_cbmem_pointers(head);
|
|
|
|
/* Add board-specific table entries, if any. */
|
|
lb_board(head);
|
|
|
|
#if IS_ENABLED(CONFIG_CHROMEOS_RAMOOPS)
|
|
lb_ramoops(head);
|
|
#endif
|
|
|
|
lb_boot_media_params(head);
|
|
|
|
/* Add all cbmem entries into the coreboot tables. */
|
|
cbmem_add_records_to_cbtable(head);
|
|
|
|
/* Remember where my valid memory ranges are */
|
|
return lb_table_fini(head);
|
|
}
|