715 lines
18 KiB
C
715 lines
18 KiB
C
/* ----------------------------------------------------------------------- *
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*
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* Copyright 2003-2009 H. Peter Anvin - All Rights Reserved
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* Copyright 2009-2010 Intel Corporation; author: H. Peter Anvin
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* Copyright 2010 Shao Miller
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* Copyright 2010-2012 Michal Soltys
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*
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* Permission is hereby granted, free of charge, to any person
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* obtaining a copy of this software and associated documentation
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* files (the "Software"), to deal in the Software without
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* restriction, including without limitation the rights to use,
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* copy, modify, merge, publish, distribute, sublicense, and/or
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* sell copies of the Software, and to permit persons to whom
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* the Software is furnished to do so, subject to the following
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* conditions:
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*
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* The above copyright notice and this permission notice shall
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* be included in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES
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* OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT
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* HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
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* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
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* OTHER DEALINGS IN THE SOFTWARE.
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*
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* ----------------------------------------------------------------------- */
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/*
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* partiter.c
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*
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* Provides disk / partition iteration.
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*/
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <stdarg.h>
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#include <zlib.h>
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#include <syslinux/disk.h>
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#include "partiter.h"
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#include "utility.h"
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#define ost_is_ext(type) ((type) == 0x05 || (type) == 0x0F || (type) == 0x85)
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#define ost_is_nondata(type) (ost_is_ext(type) || (type) == 0x00)
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#define sane(s,l) ((s)+(l) > (s))
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/* virtual forwards */
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static void pi_dtor_(struct part_iter *);
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static int pi_next_(struct part_iter *);
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static int pi_dos_next(struct part_iter *);
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static int pi_gpt_next(struct part_iter *);
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/* vtab and types */
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static struct itertype types[] = {
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[0] = {
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.dtor = &pi_dtor_,
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.next = &pi_dos_next,
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}, [1] = {
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.dtor = &pi_dtor_,
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.next = &pi_gpt_next,
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}, [2] = {
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.dtor = &pi_dtor_,
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.next = &pi_next_,
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}};
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const struct itertype * const typedos = types;
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const struct itertype * const typegpt = types+1;
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const struct itertype * const typeraw = types+2;
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/* pi_dtor_() - common/raw iterator cleanup */
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static void pi_dtor_(struct part_iter *iter)
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{
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/* syslinux's free is null resilient */
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free(iter->data);
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}
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/* pi_ctor() - common/raw iterator initialization */
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static int pi_ctor(struct part_iter *iter,
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const struct disk_info *di, int flags
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)
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{
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memcpy(&iter->di, di, sizeof *di);
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iter->flags = flags;
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iter->index0 = -1;
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iter->length = di->lbacnt;
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iter->type = typeraw;
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return 0;
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}
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/* pi_dos_ctor() - MBR/EBR iterator specific initialization */
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static int pi_dos_ctor(struct part_iter *iter,
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const struct disk_info *di, int flags,
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const struct disk_dos_mbr *mbr
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)
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{
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if (pi_ctor(iter, di, flags))
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return -1;
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if (!(iter->data = malloc(sizeof *mbr))) {
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critm();
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goto bail;
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}
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memcpy(iter->data, mbr, sizeof *mbr);
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iter->dos.bebr_index0 = -1;
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iter->dos.disk_sig = mbr->disk_sig;
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iter->type = typedos;
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return 0;
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bail:
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pi_dtor_(iter);
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return -1;
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}
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/* pi_gpt_ctor() - GPT iterator specific initialization */
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static int pi_gpt_ctor(struct part_iter *iter,
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const struct disk_info *di, int flags,
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const struct disk_gpt_header *gpth, const struct disk_gpt_part_entry *gptl
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)
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{
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uint64_t siz;
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if (pi_ctor(iter, di, flags))
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return -1;
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siz = (uint64_t)gpth->part_count * gpth->part_size;
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if (!(iter->data = malloc((size_t)siz))) {
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critm();
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goto bail;
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}
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memcpy(iter->data, gptl, (size_t)siz);
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iter->gpt.pe_count = (int)gpth->part_count;
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iter->gpt.pe_size = (int)gpth->part_size;
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iter->gpt.ufirst = gpth->lba_first_usable;
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iter->gpt.ulast = gpth->lba_last_usable;
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memcpy(&iter->gpt.disk_guid, &gpth->disk_guid, sizeof gpth->disk_guid);
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memcpy(&iter->gpt.part_guid, &gpth->disk_guid, sizeof gpth->disk_guid);
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iter->type = typegpt;
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return 0;
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bail:
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pi_dtor_(iter);
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return -1;
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}
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/* Logical partition must be sane, meaning:
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* - must be data or empty
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* - must have non-0 start and length
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* - values must not wrap around 32bit
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* - must be inside current EBR frame
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*/
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static int notsane_logical(const struct part_iter *iter)
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{
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const struct disk_dos_part_entry *dp;
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uint32_t end_log;
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dp = ((struct disk_dos_mbr *)iter->data)->table;
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if (!dp[0].ostype)
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return 0;
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if (ost_is_ext(dp[0].ostype)) {
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error("The 1st EBR entry must be data or empty.");
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return -1;
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}
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if (!(iter->flags & PIF_STRICT))
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return 0;
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end_log = dp[0].start_lba + dp[0].length;
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if (!dp[0].start_lba ||
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!dp[0].length ||
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!sane(dp[0].start_lba, dp[0].length) ||
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end_log > iter->dos.nebr_siz) {
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error("Logical partition (in EBR) with invalid offset and/or length.");
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return -1;
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}
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return 0;
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}
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/* Extended partition must be sane, meaning:
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* - must be extended or empty
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* - must have non-0 start and length
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* - values must not wrap around 32bit
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* - must be inside base EBR frame
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*/
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static int notsane_extended(const struct part_iter *iter)
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{
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const struct disk_dos_part_entry *dp;
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uint32_t end_ebr;
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dp = ((struct disk_dos_mbr *)iter->data)->table;
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if (!dp[1].ostype)
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return 0;
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if (!ost_is_nondata(dp[1].ostype)) {
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error("The 2nd EBR entry must be extended or empty.");
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return -1;
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}
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if (!(iter->flags & PIF_STRICT))
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return 0;
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end_ebr = dp[1].start_lba + dp[1].length;
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if (!dp[1].start_lba ||
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!dp[1].length ||
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!sane(dp[1].start_lba, dp[1].length) ||
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end_ebr > iter->dos.bebr_siz) {
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error("Extended partition (EBR) with invalid offset and/or length.");
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return -1;
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}
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return 0;
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}
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/* Primary partition must be sane, meaning:
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* - must have non-0 start and length
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* - values must not wrap around 32bit
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*/
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static int notsane_primary(const struct part_iter *iter)
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{
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const struct disk_dos_part_entry *dp;
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dp = ((struct disk_dos_mbr *)iter->data)->table + iter->index0;
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if (!dp->ostype)
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return 0;
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if (!(iter->flags & PIF_STRICT))
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return 0;
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if (!dp->start_lba ||
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!dp->length ||
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!sane(dp->start_lba, dp->length) ||
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((iter->flags & PIF_STRICTER) && (dp->start_lba + dp->length > iter->di.lbacnt))) {
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error("Primary partition (in MBR) with invalid offset and/or length.");
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return -1;
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}
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return 0;
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}
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static int notsane_gpt(const struct part_iter *iter)
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{
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const struct disk_gpt_part_entry *gp;
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gp = (const struct disk_gpt_part_entry *)
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(iter->data + iter->index0 * iter->gpt.pe_size);
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if (guid_is0(&gp->type))
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return 0;
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if (!(iter->flags & PIF_STRICT))
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return 0;
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if (gp->lba_first < iter->gpt.ufirst ||
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gp->lba_last > iter->gpt.ulast) {
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error("LBA sectors of GPT partition are beyond the range allowed in GPT header.");
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return -1;
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}
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return 0;
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}
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static int dos_next_mbr(struct part_iter *iter, uint32_t *lba,
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struct disk_dos_part_entry **_dp)
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{
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struct disk_dos_part_entry *dp;
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while (++iter->index0 < 4) {
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dp = ((struct disk_dos_mbr *)iter->data)->table + iter->index0;
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if (notsane_primary(iter)) {
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iter->status = PI_INSANE;
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return -1;
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}
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if (ost_is_ext(dp->ostype)) {
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if (iter->dos.bebr_index0 >= 0) {
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error("More than 1 extended partition.");
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iter->status = PI_INSANE;
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return -1;
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}
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/* record base EBR index */
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iter->dos.bebr_index0 = iter->index0;
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}
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if (!ost_is_nondata(dp->ostype) || (iter->flags & PIF_STEPALL)) {
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*lba = dp->start_lba;
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*_dp = dp;
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break;
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}
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}
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return 0;
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}
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static int prep_base_ebr(struct part_iter *iter)
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{
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struct disk_dos_part_entry *dp;
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if (iter->dos.bebr_index0 < 0) /* if we don't have base extended partition at all */
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return -1;
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else if (!iter->dos.bebr_lba) { /* if not initialized yet */
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dp = ((struct disk_dos_mbr *)iter->data)->table + iter->dos.bebr_index0;
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iter->dos.bebr_lba = dp->start_lba;
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iter->dos.bebr_siz = dp->length;
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iter->dos.nebr_lba = dp->start_lba;
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iter->dos.nebr_siz = dp->length;
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iter->index0--;
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}
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return 0;
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}
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static int dos_next_ebr(struct part_iter *iter, uint32_t *lba,
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struct disk_dos_part_entry **_dp)
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{
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struct disk_dos_part_entry *dp;
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if (prep_base_ebr(iter) < 0) {
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iter->status = PI_DONE;
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return -1;
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}
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while (++iter->index0 < 1024 && iter->dos.nebr_lba) {
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free(iter->data);
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if (!(iter->data =
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disk_read_sectors(&iter->di, iter->dos.nebr_lba, 1))) {
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error("Couldn't load EBR.");
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iter->status = PI_ERRLOAD;
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return -1;
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}
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/* check sanity of loaded data */
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if (notsane_logical(iter) || notsane_extended(iter)) {
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iter->status = PI_INSANE;
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return -1;
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}
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dp = ((struct disk_dos_mbr *)iter->data)->table;
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iter->dos.cebr_lba = iter->dos.nebr_lba;
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iter->dos.cebr_siz = iter->dos.nebr_siz;
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/* setup next frame values */
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if (dp[1].ostype) {
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iter->dos.nebr_lba = iter->dos.bebr_lba + dp[1].start_lba;
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iter->dos.nebr_siz = dp[1].length;
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} else {
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iter->dos.nebr_lba = 0;
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iter->dos.nebr_siz = 0;
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}
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if (!dp[0].ostype)
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iter->dos.logskipcnt++;
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if (dp[0].ostype || (iter->flags & PIF_STEPALL)) {
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*lba = dp[0].start_lba ? iter->dos.cebr_lba + dp[0].start_lba : 0;
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*_dp = dp;
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return 0;
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}
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/*
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* This way it's possible to continue, if some crazy soft left a "hole"
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* - EBR with a valid extended partition without a logical one. In
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* such case, linux will not reserve a number for such hole - so we
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* don't increase index0. If PIF_STEPALL flag is set, we will never
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* reach this place.
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*/
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}
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iter->status = PI_DONE;
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return -1;
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}
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static void gpt_conv_label(struct part_iter *iter)
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{
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const struct disk_gpt_part_entry *gp;
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const int16_t *orig_lab;
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gp = (const struct disk_gpt_part_entry *)
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(iter->data + iter->index0 * iter->gpt.pe_size);
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orig_lab = (const int16_t *)gp->name;
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/* caveat: this is very crude conversion */
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for (int i = 0; i < PI_GPTLABSIZE/2; i++) {
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iter->gpt.part_label[i] = (char)orig_lab[i];
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}
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iter->gpt.part_label[PI_GPTLABSIZE/2] = 0;
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}
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static inline int valid_crc(uint32_t crc, const uint8_t *buf, unsigned int siz)
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{
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return crc == crc32(crc32(0, NULL, 0), buf, siz);
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}
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static int valid_crc_hdr(void *buf)
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{
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struct disk_gpt_header *gh = buf;
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uint32_t crc = gh->chksum;
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int valid;
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gh->chksum = 0;
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valid = crc == crc32(crc32(0, NULL, 0), buf, gh->hdr_size);
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gh->chksum = crc;
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return valid;
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}
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static int pi_next_(struct part_iter *iter)
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{
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iter->status = PI_DONE;
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return iter->status;
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}
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static int pi_dos_next(struct part_iter *iter)
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{
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uint32_t abs_lba = 0;
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struct disk_dos_part_entry *dos_part = NULL;
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if (iter->status)
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return iter->status;
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/* look for primary partitions */
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if (iter->index0 < 4 &&
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dos_next_mbr(iter, &abs_lba, &dos_part) < 0)
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return iter->status;
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/* look for logical partitions */
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if (iter->index0 >= 4 &&
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dos_next_ebr(iter, &abs_lba, &dos_part) < 0)
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return iter->status;
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/*
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* note special index handling:
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* in case PIF_STEPALL is set - this makes the index consistent with
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* non-PIF_STEPALL iterators
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*/
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if (!dos_part->ostype)
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iter->index = -1;
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else
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iter->index = iter->index0 + 1 - iter->dos.logskipcnt;
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iter->abs_lba = abs_lba;
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iter->length = dos_part->length;
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iter->record = (char *)dos_part;
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#ifdef DEBUG
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disk_dos_part_dump(dos_part);
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#endif
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return iter->status;
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}
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static int pi_gpt_next(struct part_iter *iter)
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{
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const struct disk_gpt_part_entry *gpt_part = NULL;
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if (iter->status)
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return iter->status;
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while (++iter->index0 < iter->gpt.pe_count) {
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gpt_part = (const struct disk_gpt_part_entry *)
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(iter->data + iter->index0 * iter->gpt.pe_size);
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if (notsane_gpt(iter)) {
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iter->status = PI_INSANE;
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return iter->status;
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}
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if (!guid_is0(&gpt_part->type) || (iter->flags & PIF_STEPALL))
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break;
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}
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/* no more partitions ? */
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if (iter->index0 == iter->gpt.pe_count) {
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iter->status = PI_DONE;
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return iter->status;
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}
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/* gpt_part is guaranteed to be valid here */
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iter->index = iter->index0 + 1;
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iter->abs_lba = gpt_part->lba_first;
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iter->length = gpt_part->lba_last - gpt_part->lba_first + 1;
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iter->record = (char *)gpt_part;
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memcpy(&iter->gpt.part_guid, &gpt_part->uid, sizeof(struct guid));
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gpt_conv_label(iter);
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#ifdef DEBUG
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disk_gpt_part_dump(gpt_part);
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#endif
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return iter->status;
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}
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static struct part_iter *pi_alloc(void)
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{
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struct part_iter *iter;
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if (!(iter = malloc(sizeof *iter)))
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critm();
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else
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memset(iter, 0, sizeof *iter);
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return iter;
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}
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/* pi_del() - delete iterator */
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void pi_del(struct part_iter **_iter)
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{
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if(!_iter || !*_iter)
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return;
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pi_dtor(*_iter);
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free(*_iter);
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*_iter = NULL;
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}
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static void try_gpt_we(const char *str, int sec)
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{
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if (sec)
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error(str);
|
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else
|
|
warn(str);
|
|
}
|
|
|
|
static struct disk_gpt_header *try_gpt_hdr(const struct disk_info *di, int sec)
|
|
{
|
|
const char *desc = sec ? "backup" : "primary";
|
|
uint64_t gpt_cur = sec ? di->lbacnt - 1 : 1;
|
|
struct disk_gpt_header *gpth;
|
|
char errbuf[64];
|
|
|
|
gpth = disk_read_sectors(di, gpt_cur, 1);
|
|
if (!gpth) {
|
|
sprintf(errbuf, "Unable to read %s GPT header.", desc);
|
|
try_gpt_we(errbuf, sec);
|
|
return NULL;
|
|
}
|
|
if(!valid_crc_hdr(gpth)) {
|
|
sprintf(errbuf, "Invalid checksum of %s GPT header.", desc);
|
|
try_gpt_we(errbuf, sec);
|
|
free(gpth);
|
|
return NULL;
|
|
}
|
|
return gpth;
|
|
}
|
|
|
|
static struct disk_gpt_part_entry *try_gpt_list(const struct disk_info *di, const struct disk_gpt_header *gpth, int alt)
|
|
{
|
|
int pri = gpth->lba_cur < gpth->lba_alt;
|
|
const char *desc = alt ? "alternative" : "main";
|
|
struct disk_gpt_part_entry *gptl;
|
|
char errbuf[64];
|
|
uint64_t gpt_lsiz; /* size of GPT partition list in bytes */
|
|
uint64_t gpt_lcnt; /* size of GPT partition in sectors */
|
|
uint64_t gpt_loff; /* offset to GPT partition list in sectors */
|
|
|
|
gpt_lsiz = (uint64_t)gpth->part_size * gpth->part_count;
|
|
gpt_lcnt = (gpt_lsiz + di->bps - 1) / di->bps;
|
|
if (!alt) {
|
|
/* prefer header value for partition table if not asking for alternative */
|
|
gpt_loff = gpth->lba_table;
|
|
} else {
|
|
/* try to read alternative, we have to calculate its position */
|
|
if (!pri)
|
|
gpt_loff = gpth->lba_alt + 1;
|
|
else
|
|
gpt_loff = gpth->lba_alt - gpt_lcnt;
|
|
}
|
|
|
|
gptl = disk_read_sectors(di, gpt_loff, gpt_lcnt);
|
|
if (!gptl) {
|
|
sprintf(errbuf, "Unable to read %s GPT partition list.", desc);
|
|
try_gpt_we(errbuf, alt);
|
|
return NULL;
|
|
}
|
|
if (!valid_crc(gpth->table_chksum, (const uint8_t *)gptl, gpt_lsiz)) {
|
|
sprintf(errbuf, "Invalid checksum of %s GPT partition list.", desc);
|
|
try_gpt_we(errbuf, alt);
|
|
free(gptl);
|
|
return NULL;
|
|
}
|
|
return gptl;
|
|
}
|
|
|
|
static int notsane_gpt_hdr(const struct disk_info *di, const struct disk_gpt_header *gpth, int flags)
|
|
{
|
|
uint64_t gpt_loff; /* offset to GPT partition list in sectors */
|
|
uint64_t gpt_lsiz; /* size of GPT partition list in bytes */
|
|
uint64_t gpt_lcnt; /* size of GPT partition in sectors */
|
|
uint64_t gpt_sec; /* secondary gpt header */
|
|
|
|
if (!(flags & PIF_STRICT))
|
|
return 0;
|
|
|
|
if (gpth->lba_alt < gpth->lba_cur)
|
|
gpt_sec = gpth->lba_cur;
|
|
else
|
|
gpt_sec = gpth->lba_alt;
|
|
gpt_loff = gpth->lba_table;
|
|
gpt_lsiz = (uint64_t)gpth->part_size * gpth->part_count;
|
|
gpt_lcnt = (gpt_lsiz + di->bps - 1) / di->bps;
|
|
|
|
/*
|
|
* disk_read_sectors allows reading of max 255 sectors, so we use
|
|
* it as a sanity check base. EFI doesn't specify max (AFAIK).
|
|
*/
|
|
if (gpt_loff < 2 || !gpt_lsiz || gpt_lcnt > 255u ||
|
|
gpth->lba_first_usable > gpth->lba_last_usable ||
|
|
!sane(gpt_loff, gpt_lcnt) ||
|
|
(gpt_loff + gpt_lcnt > gpth->lba_first_usable && gpt_loff <= gpth->lba_last_usable) ||
|
|
gpt_loff + gpt_lcnt > gpt_sec ||
|
|
((flags & PIF_STRICTER) && (gpt_sec >= di->lbacnt)) ||
|
|
gpth->part_size < sizeof(struct disk_gpt_part_entry))
|
|
return -1;
|
|
|
|
return 0;
|
|
}
|
|
|
|
/* pi_begin() - validate and and get proper iterator for a disk described by di */
|
|
struct part_iter *pi_begin(const struct disk_info *di, int flags)
|
|
{
|
|
int isgpt = 0, ret = -1;
|
|
struct part_iter *iter;
|
|
struct disk_dos_mbr *mbr = NULL;
|
|
struct disk_gpt_header *gpth = NULL;
|
|
struct disk_gpt_part_entry *gptl = NULL;
|
|
|
|
/* Preallocate iterator */
|
|
if (!(iter = pi_alloc()))
|
|
goto out;
|
|
|
|
/* Read MBR */
|
|
if (!(mbr = disk_read_sectors(di, 0, 1))) {
|
|
error("Unable to read the first disk sector.");
|
|
goto out;
|
|
}
|
|
|
|
/* Check for MBR magic */
|
|
if (mbr->sig != disk_mbr_sig_magic) {
|
|
warn("No MBR magic, treating disk as raw.");
|
|
/* looks like RAW */
|
|
ret = pi_ctor(iter, di, flags);
|
|
goto out;
|
|
}
|
|
|
|
/* Check for GPT protective MBR */
|
|
for (size_t i = 0; i < 4; i++)
|
|
isgpt |= (mbr->table[i].ostype == 0xEE);
|
|
isgpt = isgpt && !(flags & PIF_PREFMBR);
|
|
|
|
/* Try to read GPT header */
|
|
if (isgpt) {
|
|
gpth = try_gpt_hdr(di, 0);
|
|
if (!gpth)
|
|
/*
|
|
* this read might fail if bios reports different disk size (different vm/pc)
|
|
* not much we can do here to avoid it
|
|
*/
|
|
gpth = try_gpt_hdr(di, 1);
|
|
if (!gpth)
|
|
goto out;
|
|
}
|
|
|
|
if (gpth && gpth->rev.uint32 == 0x00010000 &&
|
|
!memcmp(gpth->sig, disk_gpt_sig_magic, sizeof gpth->sig)) {
|
|
/* looks like GPT v1.0 */
|
|
#ifdef DEBUG
|
|
dprintf("Looks like a GPT v1.0 disk.\n");
|
|
disk_gpt_header_dump(gpth);
|
|
#endif
|
|
if (notsane_gpt_hdr(di, gpth, flags)) {
|
|
error("GPT header values are corrupted.");
|
|
goto out;
|
|
}
|
|
|
|
gptl = try_gpt_list(di, gpth, 0);
|
|
if (!gptl)
|
|
gptl = try_gpt_list(di, gpth, 1);
|
|
if (!gptl)
|
|
goto out;
|
|
|
|
/* looks like GPT */
|
|
ret = pi_gpt_ctor(iter, di, flags, gpth, gptl);
|
|
} else {
|
|
/* looks like MBR */
|
|
ret = pi_dos_ctor(iter, di, flags, mbr);
|
|
}
|
|
out:
|
|
if (ret < 0) {
|
|
free(iter);
|
|
iter = NULL;
|
|
}
|
|
free(mbr);
|
|
free(gpth);
|
|
free(gptl);
|
|
|
|
return iter;
|
|
}
|
|
|
|
/* vim: set ts=8 sts=4 sw=4 noet: */
|