mirror of https://github.com/ipxe/ipxe.git
670 lines
18 KiB
C
670 lines
18 KiB
C
/*
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* Copyright (C) 2007 Michael Brown <mbrown@fensystems.co.uk>.
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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; either version 2 of the
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* License, or any later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* 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 Street, Fifth Floor, Boston, MA
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* 02110-1301, USA.
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*
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* You can also choose to distribute this program under the terms of
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* the Unmodified Binary Distribution Licence (as given in the file
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* COPYING.UBDL), provided that you have satisfied its requirements.
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*/
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FILE_LICENCE ( GPL2_OR_LATER_OR_UBDL );
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/**
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* @file
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*
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* Linux bzImage image format
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*
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*/
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#include <stdint.h>
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#include <stdlib.h>
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#include <string.h>
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#include <errno.h>
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#include <assert.h>
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#include <realmode.h>
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#include <bzimage.h>
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#include <initrd.h>
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#include <ipxe/uaccess.h>
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#include <ipxe/image.h>
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#include <ipxe/segment.h>
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#include <ipxe/init.h>
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#include <ipxe/cpio.h>
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#include <ipxe/features.h>
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FEATURE ( FEATURE_IMAGE, "bzImage", DHCP_EB_FEATURE_BZIMAGE, 1 );
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/**
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* bzImage context
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*/
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struct bzimage_context {
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/** Boot protocol version */
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unsigned int version;
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/** Real-mode kernel portion load segment address */
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unsigned int rm_kernel_seg;
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/** Real-mode kernel portion load address */
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userptr_t rm_kernel;
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/** Real-mode kernel portion file size */
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size_t rm_filesz;
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/** Real-mode heap top (offset from rm_kernel) */
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size_t rm_heap;
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/** Command line (offset from rm_kernel) */
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size_t rm_cmdline;
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/** Command line maximum length */
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size_t cmdline_size;
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/** Real-mode kernel portion total memory size */
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size_t rm_memsz;
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/** Non-real-mode kernel portion load address */
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userptr_t pm_kernel;
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/** Non-real-mode kernel portion file and memory size */
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size_t pm_sz;
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/** Video mode */
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unsigned int vid_mode;
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/** Memory limit */
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uint64_t mem_limit;
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/** Initrd address */
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physaddr_t ramdisk_image;
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/** Initrd size */
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physaddr_t ramdisk_size;
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/** Command line magic block */
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struct bzimage_cmdline cmdline_magic;
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/** bzImage header */
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struct bzimage_header bzhdr;
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};
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/**
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* Parse bzImage header
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*
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* @v image bzImage file
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* @v bzimg bzImage context
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* @v src bzImage to parse
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* @ret rc Return status code
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*/
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static int bzimage_parse_header ( struct image *image,
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struct bzimage_context *bzimg,
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userptr_t src ) {
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unsigned int syssize;
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int is_bzimage;
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/* Sanity check */
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if ( image->len < ( BZI_HDR_OFFSET + sizeof ( bzimg->bzhdr ) ) ) {
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DBGC ( image, "bzImage %p too short for kernel header\n",
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image );
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return -ENOEXEC;
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}
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/* Read in header structures */
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memset ( bzimg, 0, sizeof ( *bzimg ) );
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copy_from_user ( &bzimg->cmdline_magic, src, BZI_CMDLINE_OFFSET,
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sizeof ( bzimg->cmdline_magic ) );
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copy_from_user ( &bzimg->bzhdr, src, BZI_HDR_OFFSET,
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sizeof ( bzimg->bzhdr ) );
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/* Calculate size of real-mode portion */
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bzimg->rm_filesz = ( ( ( bzimg->bzhdr.setup_sects ?
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bzimg->bzhdr.setup_sects : 4 ) + 1 ) << 9 );
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if ( bzimg->rm_filesz > image->len ) {
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DBGC ( image, "bzImage %p too short for %zd byte of setup\n",
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image, bzimg->rm_filesz );
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return -ENOEXEC;
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}
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bzimg->rm_memsz = BZI_ASSUMED_RM_SIZE;
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/* Calculate size of protected-mode portion */
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bzimg->pm_sz = ( image->len - bzimg->rm_filesz );
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syssize = ( ( bzimg->pm_sz + 15 ) / 16 );
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/* Check for signatures and determine version */
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if ( bzimg->bzhdr.boot_flag != BZI_BOOT_FLAG ) {
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DBGC ( image, "bzImage %p missing 55AA signature\n", image );
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return -ENOEXEC;
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}
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if ( bzimg->bzhdr.header == BZI_SIGNATURE ) {
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/* 2.00+ */
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bzimg->version = bzimg->bzhdr.version;
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} else {
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/* Pre-2.00. Check that the syssize field is correct,
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* as a guard against accepting arbitrary binary data,
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* since the 55AA check is pretty lax. Note that the
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* syssize field is unreliable for protocols between
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* 2.00 and 2.03 inclusive, so we should not always
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* check this field.
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*/
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bzimg->version = 0x0100;
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if ( bzimg->bzhdr.syssize != syssize ) {
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DBGC ( image, "bzImage %p bad syssize %x (expected "
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"%x)\n", image, bzimg->bzhdr.syssize, syssize );
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return -ENOEXEC;
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}
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}
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/* Determine image type */
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is_bzimage = ( ( bzimg->version >= 0x0200 ) ?
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( bzimg->bzhdr.loadflags & BZI_LOAD_HIGH ) : 0 );
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/* Calculate load address of real-mode portion */
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bzimg->rm_kernel_seg = ( is_bzimage ? 0x1000 : 0x9000 );
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bzimg->rm_kernel = real_to_user ( bzimg->rm_kernel_seg, 0 );
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/* Allow space for the stack and heap */
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bzimg->rm_memsz += BZI_STACK_SIZE;
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bzimg->rm_heap = bzimg->rm_memsz;
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/* Allow space for the command line */
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bzimg->rm_cmdline = bzimg->rm_memsz;
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bzimg->rm_memsz += BZI_CMDLINE_SIZE;
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/* Calculate load address of protected-mode portion */
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bzimg->pm_kernel = phys_to_user ( is_bzimage ? BZI_LOAD_HIGH_ADDR
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: BZI_LOAD_LOW_ADDR );
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/* Extract video mode */
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bzimg->vid_mode = bzimg->bzhdr.vid_mode;
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/* Extract memory limit */
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bzimg->mem_limit = ( ( bzimg->version >= 0x0203 ) ?
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bzimg->bzhdr.initrd_addr_max : BZI_INITRD_MAX );
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/* Extract command line size */
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bzimg->cmdline_size = ( ( bzimg->version >= 0x0206 ) ?
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bzimg->bzhdr.cmdline_size : BZI_CMDLINE_SIZE );
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DBGC ( image, "bzImage %p version %04x RM %#lx+%#zx PM %#lx+%#zx "
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"cmdlen %zd\n", image, bzimg->version,
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user_to_phys ( bzimg->rm_kernel, 0 ), bzimg->rm_filesz,
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user_to_phys ( bzimg->pm_kernel, 0 ), bzimg->pm_sz,
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bzimg->cmdline_size );
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return 0;
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}
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/**
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* Update bzImage header in loaded kernel
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*
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* @v image bzImage file
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* @v bzimg bzImage context
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* @v dst bzImage to update
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*/
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static void bzimage_update_header ( struct image *image,
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struct bzimage_context *bzimg,
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userptr_t dst ) {
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/* Set loader type */
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if ( bzimg->version >= 0x0200 )
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bzimg->bzhdr.type_of_loader = BZI_LOADER_TYPE_IPXE;
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/* Set heap end pointer */
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if ( bzimg->version >= 0x0201 ) {
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bzimg->bzhdr.heap_end_ptr = ( bzimg->rm_heap - 0x200 );
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bzimg->bzhdr.loadflags |= BZI_CAN_USE_HEAP;
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}
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/* Set command line */
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if ( bzimg->version >= 0x0202 ) {
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bzimg->bzhdr.cmd_line_ptr = user_to_phys ( bzimg->rm_kernel,
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bzimg->rm_cmdline );
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} else {
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bzimg->cmdline_magic.magic = BZI_CMDLINE_MAGIC;
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bzimg->cmdline_magic.offset = bzimg->rm_cmdline;
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if ( bzimg->version >= 0x0200 )
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bzimg->bzhdr.setup_move_size = bzimg->rm_memsz;
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}
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/* Set video mode */
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bzimg->bzhdr.vid_mode = bzimg->vid_mode;
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/* Set initrd address */
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if ( bzimg->version >= 0x0200 ) {
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bzimg->bzhdr.ramdisk_image = bzimg->ramdisk_image;
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bzimg->bzhdr.ramdisk_size = bzimg->ramdisk_size;
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}
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/* Write out header structures */
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copy_to_user ( dst, BZI_CMDLINE_OFFSET, &bzimg->cmdline_magic,
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sizeof ( bzimg->cmdline_magic ) );
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copy_to_user ( dst, BZI_HDR_OFFSET, &bzimg->bzhdr,
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sizeof ( bzimg->bzhdr ) );
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DBGC ( image, "bzImage %p vidmode %d\n", image, bzimg->vid_mode );
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}
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/**
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* Parse kernel command line for bootloader parameters
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*
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* @v image bzImage file
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* @v bzimg bzImage context
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* @v cmdline Kernel command line
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* @ret rc Return status code
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*/
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static int bzimage_parse_cmdline ( struct image *image,
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struct bzimage_context *bzimg,
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const char *cmdline ) {
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char *vga;
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char *mem;
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/* Look for "vga=" */
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if ( ( vga = strstr ( cmdline, "vga=" ) ) ) {
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vga += 4;
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if ( strcmp ( vga, "normal" ) == 0 ) {
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bzimg->vid_mode = BZI_VID_MODE_NORMAL;
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} else if ( strcmp ( vga, "ext" ) == 0 ) {
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bzimg->vid_mode = BZI_VID_MODE_EXT;
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} else if ( strcmp ( vga, "ask" ) == 0 ) {
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bzimg->vid_mode = BZI_VID_MODE_ASK;
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} else {
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bzimg->vid_mode = strtoul ( vga, &vga, 0 );
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if ( *vga && ( *vga != ' ' ) ) {
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DBGC ( image, "bzImage %p strange \"vga=\""
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"terminator '%c'\n", image, *vga );
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}
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}
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}
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/* Look for "mem=" */
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if ( ( mem = strstr ( cmdline, "mem=" ) ) ) {
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mem += 4;
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bzimg->mem_limit = strtoul ( mem, &mem, 0 );
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switch ( *mem ) {
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case 'G':
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case 'g':
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bzimg->mem_limit <<= 10;
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case 'M':
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case 'm':
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bzimg->mem_limit <<= 10;
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case 'K':
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case 'k':
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bzimg->mem_limit <<= 10;
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break;
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case '\0':
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case ' ':
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break;
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default:
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DBGC ( image, "bzImage %p strange \"mem=\" "
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"terminator '%c'\n", image, *mem );
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break;
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}
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bzimg->mem_limit -= 1;
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}
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return 0;
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}
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/**
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* Set command line
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*
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* @v image bzImage image
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* @v bzimg bzImage context
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* @v cmdline Kernel command line
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*/
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static void bzimage_set_cmdline ( struct image *image,
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struct bzimage_context *bzimg,
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const char *cmdline ) {
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size_t cmdline_len;
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/* Copy command line down to real-mode portion */
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cmdline_len = ( strlen ( cmdline ) + 1 );
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if ( cmdline_len > bzimg->cmdline_size )
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cmdline_len = bzimg->cmdline_size;
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copy_to_user ( bzimg->rm_kernel, bzimg->rm_cmdline,
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cmdline, cmdline_len );
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DBGC ( image, "bzImage %p command line \"%s\"\n", image, cmdline );
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}
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/**
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* Parse standalone image command line for cpio parameters
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*
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* @v image bzImage file
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* @v cpio CPIO header
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* @v cmdline Command line
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*/
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static void bzimage_parse_cpio_cmdline ( struct image *image,
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struct cpio_header *cpio,
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const char *cmdline ) {
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char *arg;
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char *end;
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unsigned int mode;
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/* Look for "mode=" */
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if ( ( arg = strstr ( cmdline, "mode=" ) ) ) {
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arg += 5;
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mode = strtoul ( arg, &end, 8 /* Octal for file mode */ );
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if ( *end && ( *end != ' ' ) ) {
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DBGC ( image, "bzImage %p strange \"mode=\""
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"terminator '%c'\n", image, *end );
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}
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cpio_set_field ( cpio->c_mode, ( 0100000 | mode ) );
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}
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}
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/**
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* Align initrd length
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*
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* @v len Length
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* @ret len Length rounded up to INITRD_ALIGN
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*/
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static inline size_t bzimage_align ( size_t len ) {
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return ( ( len + INITRD_ALIGN - 1 ) & ~( INITRD_ALIGN - 1 ) );
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}
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/**
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* Load initrd
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*
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* @v image bzImage image
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* @v initrd initrd image
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* @v address Address at which to load, or UNULL
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* @ret len Length of loaded image, excluding zero-padding
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*/
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static size_t bzimage_load_initrd ( struct image *image,
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struct image *initrd,
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userptr_t address ) {
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char *filename = initrd->cmdline;
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char *cmdline;
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struct cpio_header cpio;
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size_t offset;
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size_t name_len;
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size_t pad_len;
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/* Do not include kernel image itself as an initrd */
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if ( initrd == image )
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return 0;
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/* Create cpio header for non-prebuilt images */
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if ( filename && filename[0] ) {
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cmdline = strchr ( filename, ' ' );
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name_len = ( ( cmdline ? ( ( size_t ) ( cmdline - filename ) )
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: strlen ( filename ) ) + 1 /* NUL */ );
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memset ( &cpio, '0', sizeof ( cpio ) );
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memcpy ( cpio.c_magic, CPIO_MAGIC, sizeof ( cpio.c_magic ) );
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cpio_set_field ( cpio.c_mode, 0100644 );
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cpio_set_field ( cpio.c_nlink, 1 );
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cpio_set_field ( cpio.c_filesize, initrd->len );
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cpio_set_field ( cpio.c_namesize, name_len );
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if ( cmdline ) {
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bzimage_parse_cpio_cmdline ( image, &cpio,
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( cmdline + 1 /* ' ' */ ));
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}
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offset = ( ( sizeof ( cpio ) + name_len + 0x03 ) & ~0x03 );
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} else {
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offset = 0;
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name_len = 0;
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}
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/* Copy in initrd image body (and cpio header if applicable) */
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if ( address ) {
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memmove_user ( address, offset, initrd->data, 0, initrd->len );
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if ( offset ) {
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memset_user ( address, 0, 0, offset );
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copy_to_user ( address, 0, &cpio, sizeof ( cpio ) );
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copy_to_user ( address, sizeof ( cpio ), filename,
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( name_len - 1 /* NUL (or space) */ ) );
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}
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DBGC ( image, "bzImage %p initrd %p [%#08lx,%#08lx,%#08lx)"
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"%s%s\n", image, initrd, user_to_phys ( address, 0 ),
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user_to_phys ( address, offset ),
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user_to_phys ( address, ( offset + initrd->len ) ),
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( filename ? " " : "" ), ( filename ? filename : "" ) );
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DBGC2_MD5A ( image, user_to_phys ( address, offset ),
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user_to_virt ( address, offset ), initrd->len );
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}
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offset += initrd->len;
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/* Zero-pad to next INITRD_ALIGN boundary */
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pad_len = ( ( -offset ) & ( INITRD_ALIGN - 1 ) );
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if ( address )
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memset_user ( address, offset, 0, pad_len );
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return offset;
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}
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/**
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* Check that initrds can be loaded
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*
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* @v image bzImage image
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* @v bzimg bzImage context
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* @ret rc Return status code
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*/
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static int bzimage_check_initrds ( struct image *image,
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struct bzimage_context *bzimg ) {
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struct image *initrd;
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userptr_t bottom;
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size_t len = 0;
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int rc;
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/* Calculate total loaded length of initrds */
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for_each_image ( initrd ) {
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/* Skip kernel */
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if ( initrd == image )
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continue;
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/* Calculate length */
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len += bzimage_load_initrd ( image, initrd, UNULL );
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len = bzimage_align ( len );
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DBGC ( image, "bzImage %p initrd %p from [%#08lx,%#08lx)%s%s\n",
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image, initrd, user_to_phys ( initrd->data, 0 ),
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user_to_phys ( initrd->data, initrd->len ),
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( initrd->cmdline ? " " : "" ),
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( initrd->cmdline ? initrd->cmdline : "" ) );
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DBGC2_MD5A ( image, user_to_phys ( initrd->data, 0 ),
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user_to_virt ( initrd->data, 0 ), initrd->len );
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}
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/* Calculate lowest usable address */
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bottom = userptr_add ( bzimg->pm_kernel, bzimg->pm_sz );
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/* Check that total length fits within space available for
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* reshuffling. This is a conservative check, since CPIO
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* headers are not present during reshuffling, but this
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* doesn't hurt and keeps the code simple.
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*/
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if ( ( rc = initrd_reshuffle_check ( len, bottom ) ) != 0 ) {
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DBGC ( image, "bzImage %p failed reshuffle check: %s\n",
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image, strerror ( rc ) );
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return rc;
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}
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/* Check that total length fits within kernel's memory limit */
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if ( user_to_phys ( bottom, len ) > bzimg->mem_limit ) {
|
|
DBGC ( image, "bzImage %p not enough space for initrds\n",
|
|
image );
|
|
return -ENOBUFS;
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
/**
|
|
* Load initrds, if any
|
|
*
|
|
* @v image bzImage image
|
|
* @v bzimg bzImage context
|
|
*/
|
|
static void bzimage_load_initrds ( struct image *image,
|
|
struct bzimage_context *bzimg ) {
|
|
struct image *initrd;
|
|
struct image *highest = NULL;
|
|
struct image *other;
|
|
userptr_t top;
|
|
userptr_t dest;
|
|
size_t offset;
|
|
size_t len;
|
|
|
|
/* Reshuffle initrds into desired order */
|
|
initrd_reshuffle ( userptr_add ( bzimg->pm_kernel, bzimg->pm_sz ) );
|
|
|
|
/* Find highest initrd */
|
|
for_each_image ( initrd ) {
|
|
if ( ( highest == NULL ) ||
|
|
( userptr_sub ( initrd->data, highest->data ) > 0 ) ) {
|
|
highest = initrd;
|
|
}
|
|
}
|
|
|
|
/* Do nothing if there are no initrds */
|
|
if ( ! highest )
|
|
return;
|
|
|
|
/* Find highest usable address */
|
|
top = userptr_add ( highest->data, bzimage_align ( highest->len ) );
|
|
if ( user_to_phys ( top, 0 ) > bzimg->mem_limit )
|
|
top = phys_to_user ( bzimg->mem_limit );
|
|
DBGC ( image, "bzImage %p loading initrds from %#08lx downwards\n",
|
|
image, user_to_phys ( top, 0 ) );
|
|
|
|
/* Load initrds in order */
|
|
for_each_image ( initrd ) {
|
|
|
|
/* Calculate cumulative length of following
|
|
* initrds (including padding).
|
|
*/
|
|
offset = 0;
|
|
for_each_image ( other ) {
|
|
if ( other == initrd )
|
|
offset = 0;
|
|
offset += bzimage_load_initrd ( image, other, UNULL );
|
|
offset = bzimage_align ( offset );
|
|
}
|
|
|
|
/* Load initrd at this address */
|
|
dest = userptr_add ( top, -offset );
|
|
len = bzimage_load_initrd ( image, initrd, dest );
|
|
|
|
/* Record initrd location */
|
|
if ( ! bzimg->ramdisk_image )
|
|
bzimg->ramdisk_image = user_to_phys ( dest, 0 );
|
|
bzimg->ramdisk_size = ( user_to_phys ( dest, len ) -
|
|
bzimg->ramdisk_image );
|
|
}
|
|
DBGC ( image, "bzImage %p initrds at [%#08lx,%#08lx)\n",
|
|
image, bzimg->ramdisk_image,
|
|
( bzimg->ramdisk_image + bzimg->ramdisk_size ) );
|
|
}
|
|
|
|
/**
|
|
* Execute bzImage image
|
|
*
|
|
* @v image bzImage image
|
|
* @ret rc Return status code
|
|
*/
|
|
static int bzimage_exec ( struct image *image ) {
|
|
struct bzimage_context bzimg;
|
|
const char *cmdline = ( image->cmdline ? image->cmdline : "" );
|
|
int rc;
|
|
|
|
/* Read and parse header from image */
|
|
if ( ( rc = bzimage_parse_header ( image, &bzimg,
|
|
image->data ) ) != 0 )
|
|
return rc;
|
|
|
|
/* Prepare segments */
|
|
if ( ( rc = prep_segment ( bzimg.rm_kernel, bzimg.rm_filesz,
|
|
bzimg.rm_memsz ) ) != 0 ) {
|
|
DBGC ( image, "bzImage %p could not prepare RM segment: %s\n",
|
|
image, strerror ( rc ) );
|
|
return rc;
|
|
}
|
|
if ( ( rc = prep_segment ( bzimg.pm_kernel, bzimg.pm_sz,
|
|
bzimg.pm_sz ) ) != 0 ) {
|
|
DBGC ( image, "bzImage %p could not prepare PM segment: %s\n",
|
|
image, strerror ( rc ) );
|
|
return rc;
|
|
}
|
|
|
|
/* Parse command line for bootloader parameters */
|
|
if ( ( rc = bzimage_parse_cmdline ( image, &bzimg, cmdline ) ) != 0)
|
|
return rc;
|
|
|
|
/* Check that initrds can be loaded */
|
|
if ( ( rc = bzimage_check_initrds ( image, &bzimg ) ) != 0 )
|
|
return rc;
|
|
|
|
/* Remove kernel from image list (without invalidating image pointer) */
|
|
unregister_image ( image_get ( image ) );
|
|
|
|
/* Load segments */
|
|
memcpy_user ( bzimg.rm_kernel, 0, image->data,
|
|
0, bzimg.rm_filesz );
|
|
memcpy_user ( bzimg.pm_kernel, 0, image->data,
|
|
bzimg.rm_filesz, bzimg.pm_sz );
|
|
|
|
/* Store command line */
|
|
bzimage_set_cmdline ( image, &bzimg, cmdline );
|
|
|
|
/* Prepare for exiting. Must do this before loading initrds,
|
|
* since loading the initrds will corrupt the external heap.
|
|
*/
|
|
shutdown_boot();
|
|
|
|
/* Load any initrds */
|
|
bzimage_load_initrds ( image, &bzimg );
|
|
|
|
/* Update kernel header */
|
|
bzimage_update_header ( image, &bzimg, bzimg.rm_kernel );
|
|
|
|
DBGC ( image, "bzImage %p jumping to RM kernel at %04x:0000 "
|
|
"(stack %04x:%04zx)\n", image, ( bzimg.rm_kernel_seg + 0x20 ),
|
|
bzimg.rm_kernel_seg, bzimg.rm_heap );
|
|
|
|
/* Jump to the kernel */
|
|
__asm__ __volatile__ ( REAL_CODE ( "movw %w0, %%ds\n\t"
|
|
"movw %w0, %%es\n\t"
|
|
"movw %w0, %%fs\n\t"
|
|
"movw %w0, %%gs\n\t"
|
|
"movw %w0, %%ss\n\t"
|
|
"movw %w1, %%sp\n\t"
|
|
"pushw %w2\n\t"
|
|
"pushw $0\n\t"
|
|
"lret\n\t" )
|
|
: : "r" ( bzimg.rm_kernel_seg ),
|
|
"r" ( bzimg.rm_heap ),
|
|
"r" ( bzimg.rm_kernel_seg + 0x20 ) );
|
|
|
|
/* There is no way for the image to return, since we provide
|
|
* no return address.
|
|
*/
|
|
assert ( 0 );
|
|
|
|
return -ECANCELED; /* -EIMPOSSIBLE */
|
|
}
|
|
|
|
/**
|
|
* Probe bzImage image
|
|
*
|
|
* @v image bzImage file
|
|
* @ret rc Return status code
|
|
*/
|
|
int bzimage_probe ( struct image *image ) {
|
|
struct bzimage_context bzimg;
|
|
int rc;
|
|
|
|
/* Read and parse header from image */
|
|
if ( ( rc = bzimage_parse_header ( image, &bzimg,
|
|
image->data ) ) != 0 )
|
|
return rc;
|
|
|
|
return 0;
|
|
}
|
|
|
|
/** Linux bzImage image type */
|
|
struct image_type bzimage_image_type __image_type ( PROBE_NORMAL ) = {
|
|
.name = "bzImage",
|
|
.probe = bzimage_probe,
|
|
.exec = bzimage_exec,
|
|
};
|