a90bd527d9
CBFS allows coreboot rom images that are only partially covered by the filesystem itself. The intention of this feature was to allow EC / ME / IMC firmware to be inserted easily at the beginning of the image. However, this was never implemented in cbfstool. This patch implements an additional parameter for cbfstool. If you call cbfstool like this: cbfstool coreboot.rom create 8192K bootblock.bin 64 0x700000 it will now create an 8M image with CBFS covering the last 1M of that image. Test: cbfstool coreboot.rom create 8192K bootblock.bin 64 0x700000 creates an 8M image that is 7M of 0xff and 1M of CBFS. Change-Id: I5c016b4bf32433f160b43f4df2dd768276f4c70b Signed-off-by: Stefan Reinauer <reinauer@google.com> Reviewed-on: http://review.coreboot.org/1708 Tested-by: build bot (Jenkins) Reviewed-by: Ronald G. Minnich <rminnich@gmail.com>
544 lines
15 KiB
C
544 lines
15 KiB
C
/*
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* common utility functions for cbfstool
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*
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* Copyright (C) 2009 coresystems GmbH
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* written by Patrick Georgi <patrick.georgi@coresystems.de>
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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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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA, 02110-1301 USA
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <libgen.h>
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#include "common.h"
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#include "cbfs.h"
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#include "elf.h"
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#define dprintf(x...)
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uint32_t getfilesize(const char *filename)
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{
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uint32_t size;
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FILE *file = fopen(filename, "rb");
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fseek(file, 0, SEEK_END);
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size = ftell(file);
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fclose(file);
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return size;
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}
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void *loadfile(const char *filename, uint32_t * romsize_p, void *content,
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int place)
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{
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FILE *file = fopen(filename, "rb");
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if (file == NULL)
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return NULL;
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fseek(file, 0, SEEK_END);
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*romsize_p = ftell(file);
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fseek(file, 0, SEEK_SET);
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if (!content) {
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content = malloc(*romsize_p);
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if (!content) {
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printf("Could not get %d bytes for file %s\n",
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*romsize_p, filename);
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exit(1);
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}
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} else if (place == SEEK_END)
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content -= *romsize_p;
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if (!fread(content, *romsize_p, 1, file)) {
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printf("failed to read %s\n", filename);
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return NULL;
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}
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fclose(file);
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return content;
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}
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struct cbfs_header *master_header;
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uint32_t phys_start, phys_end, align, romsize;
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void *offset;
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void recalculate_rom_geometry(void *romarea)
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{
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offset = romarea + romsize - 0x100000000ULL;
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master_header = (struct cbfs_header *)
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phys_to_virt(*((uint32_t *) phys_to_virt(0xfffffffc)));
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phys_start = (0 - romsize + ntohl(master_header->offset)) & 0xffffffff;
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phys_end =
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(0 - ntohl(master_header->bootblocksize) -
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sizeof(struct cbfs_header)) & 0xffffffff;
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align = ntohl(master_header->align);
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}
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void *loadrom(const char *filename)
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{
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void *romarea = loadfile(filename, &romsize, 0, SEEK_SET);
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if (romarea == NULL)
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return NULL;
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recalculate_rom_geometry(romarea);
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return romarea;
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}
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int writerom(const char *filename, void *start, uint32_t size)
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{
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FILE *file = fopen(filename, "wb");
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if (!file) {
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fprintf(stderr, "Could not open '%s' for writing: ", filename);
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perror("");
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return 1;
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}
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if (fwrite(start, size, 1, file) != 1) {
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fprintf(stderr, "Could not write to '%s': ", filename);
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perror("");
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return 1;
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}
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fclose(file);
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return 0;
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}
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int cbfs_file_header(uint32_t physaddr)
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{
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/* maybe improve this test */
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return (strncmp(phys_to_virt(physaddr), "LARCHIVE", 8) == 0);
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}
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struct cbfs_file *cbfs_create_empty_file(uint32_t physaddr, uint32_t size)
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{
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struct cbfs_file *nextfile = (struct cbfs_file *)phys_to_virt(physaddr);
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strncpy((char *)(nextfile->magic), "LARCHIVE", 8);
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nextfile->len = htonl(size);
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nextfile->type = htonl(0xffffffff);
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nextfile->checksum = 0; // FIXME?
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nextfile->offset = htonl(sizeof(struct cbfs_file) + 16);
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memset(((void *)nextfile) + sizeof(struct cbfs_file), 0, 16);
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return nextfile;
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}
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int iself(unsigned char *input)
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{
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Elf32_Ehdr *ehdr = (Elf32_Ehdr *) input;
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return !memcmp(ehdr->e_ident, ELFMAG, 4);
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}
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static struct filetypes_t {
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uint32_t type;
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const char *name;
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} filetypes[] = {
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{CBFS_COMPONENT_STAGE, "stage"},
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{CBFS_COMPONENT_PAYLOAD, "payload"},
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{CBFS_COMPONENT_OPTIONROM, "optionrom"},
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{CBFS_COMPONENT_BOOTSPLASH, "bootsplash"},
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{CBFS_COMPONENT_RAW, "raw"},
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{CBFS_COMPONENT_VSA, "vsa"},
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{CBFS_COMPONENT_MBI, "mbi"},
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{CBFS_COMPONENT_MICROCODE, "microcode"},
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{CBFS_COMPONENT_CMOS_DEFAULT, "cmos default"},
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{CBFS_COMPONENT_CMOS_LAYOUT, "cmos layout"},
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{CBFS_COMPONENT_DELETED, "deleted"},
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{CBFS_COMPONENT_NULL, "null"}
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};
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void print_supported_filetypes(void)
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{
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int i, number = ARRAY_SIZE(filetypes);
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for (i=0; i<number; i++) {
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printf(" %s%c", filetypes[i].name, (i==(number-1))?'\n':',');
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if ((i%8) == 7)
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printf("\n");
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}
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}
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const char *strfiletype(uint32_t number)
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{
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size_t i;
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for (i = 0; i < (sizeof(filetypes) / sizeof(struct filetypes_t)); i++)
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if (filetypes[i].type == number)
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return filetypes[i].name;
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return "unknown";
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}
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uint64_t intfiletype(const char *name)
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{
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size_t i;
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for (i = 0; i < (sizeof(filetypes) / sizeof(struct filetypes_t)); i++)
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if (strcmp(filetypes[i].name, name) == 0)
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return filetypes[i].type;
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return -1;
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}
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void print_cbfs_directory(const char *filename)
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{
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printf
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("%s: %d kB, bootblocksize %d, romsize %d, offset 0x%x\nAlignment: %d bytes\n\n",
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basename((char *)filename), romsize / 1024, ntohl(master_header->bootblocksize),
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romsize, ntohl(master_header->offset), align);
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printf("%-30s %-10s %-12s Size\n", "Name", "Offset", "Type");
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uint32_t current = phys_start;
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while (current < phys_end) {
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if (!cbfs_file_header(current)) {
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current += align;
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continue;
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}
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struct cbfs_file *thisfile =
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(struct cbfs_file *)phys_to_virt(current);
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uint32_t length = ntohl(thisfile->len);
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char *fname = (char *)(phys_to_virt(current) + sizeof(struct cbfs_file));
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if (strlen(fname) == 0)
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fname = "(empty)";
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printf("%-30s 0x%-8x %-12s %d\n", fname,
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current - phys_start, strfiletype(ntohl(thisfile->type)),
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length);
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current =
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ALIGN(current + ntohl(thisfile->len) +
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ntohl(thisfile->offset), align);
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}
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}
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int extract_file_from_cbfs(const char *filename, const char *payloadname, const char *outpath)
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{
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// Identify the coreboot image.
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printf(
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"%s: %d kB, bootblocksize %d, romsize %d, offset 0x%x\nAlignment: %d bytes\n\n",
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basename((char *)filename), romsize / 1024, ntohl(master_header->bootblocksize),
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romsize, ntohl(master_header->offset), align);
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FILE *outfile = NULL;
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uint32_t current = phys_start;
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while (current < phys_end) {
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if (!cbfs_file_header(current)) {
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current += align;
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continue;
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}
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// Locate the file start struct
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struct cbfs_file *thisfile =
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(struct cbfs_file *)phys_to_virt(current);
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// And its length
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uint32_t length = ntohl(thisfile->len);
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// Locate the file name
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char *fname = (char *)(phys_to_virt(current) + sizeof(struct cbfs_file));
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// It's not the file we are looking for..
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if (strcmp(fname, payloadname) != 0)
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{
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current =
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ALIGN(current + ntohl(thisfile->len) +
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ntohl(thisfile->offset), align);
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continue;
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}
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// Else, it's our file.
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printf("Found file %.30s at 0x%x, type %.12s, size %d\n", fname,
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current - phys_start, strfiletype(ntohl(thisfile->type)),
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length);
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// If we are not dumping to stdout, open the out file.
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outfile = fopen(outpath, "wb");
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if (!outfile)
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{
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printf("Could not open the file %s for writing. Aborting.\n", outpath);
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return 1;
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}
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if (ntohl(thisfile->type) != CBFS_COMPONENT_RAW)
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{
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printf("Warning: only 'raw' files are safe to extract.\n");
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}
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fwrite(((char *)thisfile)
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+ ntohl(thisfile->offset), length, 1, outfile);
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fclose(outfile);
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printf("Successfully dumped the file.\n");
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// We'll only dump one file.
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return 0;
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}
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printf("File %s not found.\n", payloadname);
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return 1;
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}
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int add_file_to_cbfs(void *content, uint32_t contentsize, uint32_t location)
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{
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uint32_t current = phys_start;
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while (current < phys_end) {
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if (!cbfs_file_header(current)) {
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current += align;
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continue;
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}
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struct cbfs_file *thisfile =
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(struct cbfs_file *)phys_to_virt(current);
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uint32_t length = ntohl(thisfile->len);
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dprintf("at %x, %x bytes\n", current, length);
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/* Is this a free chunk? */
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if ((thisfile->type == CBFS_COMPONENT_DELETED)
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|| (thisfile->type == CBFS_COMPONENT_NULL)) {
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dprintf("null||deleted at %x, %x bytes\n", current,
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length);
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/* if this is the right size, and if specified, the right location, use it */
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if ((contentsize <= length)
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&& ((location == 0) || (current == location))) {
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if (contentsize < length) {
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dprintf
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("this chunk is %x bytes, we need %x. create a new chunk at %x with %x bytes\n",
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length, contentsize,
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ALIGN(current + contentsize,
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align),
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length - contentsize);
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uint32_t start =
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ALIGN(current + contentsize, align);
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uint32_t size =
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current + ntohl(thisfile->offset)
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+ length - start - 16 -
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sizeof(struct cbfs_file);
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cbfs_create_empty_file(start, size);
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}
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dprintf("copying data\n");
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memcpy(phys_to_virt(current), content,
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contentsize);
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return 0;
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}
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if (location != 0) {
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/* CBFS has the constraint that the chain always moves up in memory. so once
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we're past the place we seek, we don't need to look any further */
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if (current > location) {
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printf
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("the requested space is not available\n");
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return 1;
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}
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/* Is the requested location inside the current chunk? */
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if ((current < location)
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&& ((location + contentsize) <=
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(current + length))) {
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/* Split it up. In the next iteration the code will be at the right place. */
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dprintf("split up. new length: %x\n",
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location - current -
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ntohl(thisfile->offset));
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thisfile->len =
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htonl(location - current -
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ntohl(thisfile->offset));
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cbfs_create_empty_file(location,
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length -
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(location -
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current));
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}
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}
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}
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current =
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ALIGN(current + ntohl(thisfile->len) +
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ntohl(thisfile->offset), align);
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}
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printf("Could not add the file to CBFS, it's probably too big.\n");
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printf("File size: %d bytes (%d KB).\n", contentsize, contentsize/1024);
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return 1;
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}
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static struct cbfs_file *merge_adjacent_files(struct cbfs_file *first,
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struct cbfs_file *second)
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{
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uint32_t new_length =
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ntohl(first->len) + ntohl(second->len) + ntohl(second->offset);
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first->len = htonl(new_length);
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first->checksum = 0; // FIXME?
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return first;
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}
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static struct cbfs_file *next_file(struct cbfs_file *prev)
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{
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uint32_t pos = (prev == NULL) ? phys_start :
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ALIGN(virt_to_phys(prev) + ntohl(prev->len) + ntohl(prev->offset),
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align);
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for (; pos < phys_end; pos += align) {
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if (cbfs_file_header(pos))
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return (struct cbfs_file *)phys_to_virt(pos);
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}
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return NULL;
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}
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int remove_file_from_cbfs(const char *filename)
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{
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struct cbfs_file *prev = NULL;
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struct cbfs_file *cur = next_file(prev);
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struct cbfs_file *next = next_file(cur);
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for (; cur; prev = cur, cur = next, next = next_file(next)) {
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/* Check if this is the file to remove. */
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char *name = (char *)cur + sizeof(*cur);
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if (strcmp(name, filename))
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continue;
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/* Mark the file as free space and erase its name. */
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cur->type = CBFS_COMPONENT_NULL;
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name[0] = '\0';
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/* Merge it with the previous file if possible. */
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if (prev && prev->type == CBFS_COMPONENT_NULL)
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cur = merge_adjacent_files(prev, cur);
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/* Merge it with the next file if possible. */
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if (next && next->type == CBFS_COMPONENT_NULL)
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merge_adjacent_files(cur, next);
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return 0;
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}
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printf("CBFS file %s not found.\n", filename);
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return 1;
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}
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/* returns new data block with cbfs_file header, suitable to dump into the ROM. location returns
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the new location that points to the cbfs_file header */
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void *create_cbfs_file(const char *filename, void *data, uint32_t * datasize,
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uint32_t type, uint32_t * location)
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{
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uint32_t filename_len = ALIGN(strlen(filename) + 1, 16);
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uint32_t headersize = sizeof(struct cbfs_file) + filename_len;
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if ((location != 0) && (*location != 0)) {
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uint32_t offset = *location % align;
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/* If offset >= (headersize % align), we can stuff the header into the offset.
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Otherwise the header has to be aligned itself, and put before the offset data */
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if (offset >= (headersize % align)) {
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offset -= (headersize % align);
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} else {
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offset += align - (headersize % align);
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}
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headersize += offset;
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*location -= headersize;
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}
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void *newdata = malloc(*datasize + headersize);
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if (!newdata) {
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printf("Could not get %d bytes for CBFS file.\n", *datasize +
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headersize);
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exit(1);
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}
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memset(newdata, 0xff, *datasize + headersize);
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struct cbfs_file *nextfile = (struct cbfs_file *)newdata;
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strncpy((char *)(nextfile->magic), "LARCHIVE", 8);
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nextfile->len = htonl(*datasize);
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nextfile->type = htonl(type);
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nextfile->checksum = 0; // FIXME?
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nextfile->offset = htonl(headersize);
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strcpy(newdata + sizeof(struct cbfs_file), filename);
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memcpy(newdata + headersize, data, *datasize);
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*datasize += headersize;
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return newdata;
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}
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int create_cbfs_image(const char *romfile, uint32_t _romsize,
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const char *bootblock, uint32_t align, uint32_t offs)
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{
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romsize = _romsize;
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unsigned char *romarea = malloc(romsize);
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if (!romarea) {
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printf("Could not get %d bytes of memory for CBFS image.\n",
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romsize);
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exit(1);
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}
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memset(romarea, 0xff, romsize);
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// Set up physical/virtual mapping
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offset = romarea + romsize - 0x100000000ULL;
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if (align == 0)
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align = 64;
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uint32_t bootblocksize = 0;
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loadfile(bootblock, &bootblocksize, romarea + romsize, SEEK_END);
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struct cbfs_header *master_header =
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(struct cbfs_header *)(romarea + romsize - bootblocksize -
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sizeof(struct cbfs_header));
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master_header->magic = ntohl(0x4f524243);
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master_header->version = ntohl(0x31313131);
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master_header->romsize = htonl(romsize);
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master_header->bootblocksize = htonl(bootblocksize);
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master_header->align = htonl(align);
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master_header->offset = htonl(offs);
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((uint32_t *) phys_to_virt(0xfffffffc))[0] =
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virt_to_phys(master_header);
|
|
|
|
recalculate_rom_geometry(romarea);
|
|
|
|
cbfs_create_empty_file((0 - romsize + offs) & 0xffffffff,
|
|
romsize - offs - bootblocksize -
|
|
sizeof(struct cbfs_header) -
|
|
sizeof(struct cbfs_file) - 16);
|
|
|
|
writerom(romfile, romarea, romsize);
|
|
return 0;
|
|
}
|
|
|
|
static int in_segment(int addr, int size, int gran)
|
|
{
|
|
return ((addr & ~(gran - 1)) == ((addr + size) & ~(gran - 1)));
|
|
}
|
|
|
|
uint32_t cbfs_find_location(const char *romfile, uint32_t filesize,
|
|
const char *filename, uint32_t alignment)
|
|
{
|
|
loadrom(romfile);
|
|
size_t filename_size = strlen(filename);
|
|
|
|
size_t headersize =
|
|
sizeof(struct cbfs_file) + ALIGN(filename_size + 1,
|
|
16) + sizeof(struct cbfs_stage);
|
|
size_t totalsize = headersize + filesize;
|
|
|
|
uint32_t current = phys_start;
|
|
while (current < phys_end) {
|
|
if (!cbfs_file_header(current)) {
|
|
current += align;
|
|
continue;
|
|
}
|
|
struct cbfs_file *thisfile =
|
|
(struct cbfs_file *)phys_to_virt(current);
|
|
|
|
uint32_t top =
|
|
current + ntohl(thisfile->len) + ntohl(thisfile->offset);
|
|
if (((ntohl(thisfile->type) == 0x0)
|
|
|| (ntohl(thisfile->type) == 0xffffffff))
|
|
&& (ntohl(thisfile->len) + ntohl(thisfile->offset) >=
|
|
totalsize)) {
|
|
if (in_segment
|
|
(current + headersize, filesize, alignment))
|
|
return current + headersize;
|
|
if ((ALIGN(current, alignment) + filesize < top)
|
|
&& (ALIGN(current, alignment) - headersize >
|
|
current)
|
|
&& in_segment(ALIGN(current, alignment), filesize,
|
|
alignment))
|
|
return ALIGN(current, alignment);
|
|
if ((ALIGN(current, alignment) + alignment + filesize <
|
|
top)
|
|
&& (ALIGN(current, alignment) + alignment -
|
|
headersize > current)
|
|
&& in_segment(ALIGN(current, alignment) + alignment,
|
|
filesize, alignment))
|
|
return ALIGN(current, alignment) + alignment;
|
|
}
|
|
current =
|
|
ALIGN(current + ntohl(thisfile->len) +
|
|
ntohl(thisfile->offset), align);
|
|
}
|
|
return 0;
|
|
}
|