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429 lines
12 KiB
429 lines
12 KiB
/* Copyright (c) 2012 The Chromium OS Authors. All rights reserved. |
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* Use of this source code is governed by a BSD-style license that can be |
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* found in the LICENSE file. |
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* |
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* Implements root device discovery via sysfs with optional bells and whistles. |
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*/ |
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#include "rootdev.h" |
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#include <ctype.h> |
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#include <dirent.h> |
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#include <err.h> |
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#include <errno.h> |
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#include <fcntl.h> |
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#include <stdbool.h> |
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#include <stddef.h> |
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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 <sys/stat.h> |
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#include <sys/types.h> |
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#include <unistd.h> |
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/* |
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* Limit prevents endless looping to find slave. |
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* We currently have at most 2 levels, this allows |
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* for future growth. |
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*/ |
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#define MAX_SLAVE_DEPTH 8 |
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static const char *kDefaultSearchPath = "/sys/block"; |
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static const char *kDefaultDevPath = "/dev/block"; |
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/* Encode the root device structuring here for Chromium OS */ |
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static const char kActiveRoot[] = "/dev/ACTIVE_ROOT"; |
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static const char kRootDev[] = "/dev/ROOT"; |
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static const char kRootA[] = "/dev/ROOT0"; |
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static const char kRootB[] = "/dev/ROOT1"; |
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struct part_config { |
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const char *name; |
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int offset; |
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}; |
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#define CHROMEOS_PRIMARY_PARTITION 3 |
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static const struct part_config kPrimaryPart[] = { { kRootA, 0 }, |
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{ kRootDev, -3 }, |
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{ kRootB, 2 } }; |
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#define CHROMEOS_SECONDARY_PARTITION 5 |
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static const struct part_config kSecondaryPart[] = { { kRootB, 0 }, |
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{ kRootDev, -5 }, |
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{ kRootA, -2 } }; |
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/* The number of entries in a part_config so we could add RootC easily. */ |
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static const int kPartitionEntries = 3; |
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/* Converts a file of %u:%u -> dev_t. */ |
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static dev_t devt_from_file(const char *file) { |
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char candidate[10]; /* TODO(wad) system-provided constant? */ |
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ssize_t bytes = 0; |
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unsigned int major_num = 0; |
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unsigned int minor_num = 0; |
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dev_t dev = 0; |
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int fd = -1; |
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/* Never hang. Either get the data or return 0. */ |
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fd = open(file, O_NONBLOCK | O_RDONLY); |
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if (fd < 0) |
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return 0; |
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bytes = read(fd, candidate, sizeof(candidate)); |
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close(fd); |
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/* 0:0 should be considered the minimum size. */ |
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if (bytes < 3) |
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return 0; |
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candidate[bytes] = 0; |
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if (sscanf(candidate, "%u:%u", &major_num, &minor_num) == 2) { |
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/* candidate's size artificially limits the size of the converted |
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* %u to safely convert to a signed int. */ |
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dev = makedev(major_num, minor_num); |
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} |
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return dev; |
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} |
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/* Walks sysfs and recurses into any directory/link that represents |
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* a block device to find sub-devices (partitions) for dev. |
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* If dev == 0, the name fo the first device in the directory will be returned. |
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* Returns the device's name in "name" */ |
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static int match_sysfs_device(char *name, size_t name_len, |
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const char *basedir, dev_t *dev, int depth) { |
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int found = -1; |
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size_t basedir_len; |
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DIR *dirp = NULL; |
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struct dirent *entry = NULL; |
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struct dirent *next = NULL; |
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char *working_path = NULL; |
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long working_path_size = 0; |
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if (!name || !name_len || !basedir || !dev) { |
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warnx("match_sysfs_device: invalid arguments supplied"); |
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return -1; |
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} |
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basedir_len = strlen(basedir); |
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if (!basedir_len) { |
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warnx("match_sysfs_device: basedir must not be empty"); |
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return -1; |
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} |
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errno = 0; |
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dirp = opendir(basedir); |
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if (!dirp) { |
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/* Don't complain if the directory doesn't exist. */ |
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if (errno != ENOENT) |
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warn("match_sysfs_device:opendir(%s)", basedir); |
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return found; |
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} |
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/* Grab a platform appropriate path to work with. |
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* Ideally, this won't vary under sys/block. */ |
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working_path_size = pathconf(basedir, _PC_NAME_MAX) + 1; |
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/* Fallback to PATH_MAX on any pathconf error. */ |
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if (working_path_size < 0) |
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working_path_size = PATH_MAX; |
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working_path = malloc(working_path_size); |
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if (!working_path) { |
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warn("malloc(dirent)"); |
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closedir(dirp); |
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return found; |
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} |
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/* Allocate a properly sized entry. */ |
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entry = malloc(offsetof(struct dirent, d_name) + working_path_size); |
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if (!entry) { |
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warn("malloc(dirent)"); |
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free(working_path); |
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closedir(dirp); |
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return found; |
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} |
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while (readdir_r(dirp, entry, &next) == 0 && next) { |
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size_t candidate_len = strlen(entry->d_name); |
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size_t path_len = 0; |
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dev_t found_devt = 0; |
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/* Ignore the usual */ |
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if (!strcmp(entry->d_name, ".") || !strcmp(entry->d_name, "..")) |
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continue; |
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/* TODO(wad) determine how to best bubble up this case. */ |
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if (candidate_len > name_len) |
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continue; |
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/* Only traverse directories or symlinks (to directories ideally) */ |
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switch (entry->d_type) { |
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case DT_UNKNOWN: |
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case DT_DIR: |
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case DT_LNK: |
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break; |
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default: |
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continue; |
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} |
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/* Determine path to block device number */ |
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path_len = snprintf(working_path, working_path_size, "%s/%s/dev", |
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basedir, entry->d_name); |
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/* Ignore if truncation occurs. */ |
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if (path_len != candidate_len + basedir_len + 5) |
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continue; |
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found_devt = devt_from_file(working_path); |
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/* *dev == 0 is a wildcard. */ |
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if (!*dev || found_devt == *dev) { |
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snprintf(name, name_len, "%s", entry->d_name); |
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*dev = found_devt; |
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found = 1; |
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break; |
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} |
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/* Prevent infinite recursion on symlink loops by limiting depth. */ |
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if (depth > 5) |
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break; |
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/* Recurse one level for devices that may have a matching partition. */ |
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if (major(found_devt) == major(*dev) && minor(*dev) > minor(found_devt)) { |
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sprintf(working_path, "%s/%s", basedir, entry->d_name); |
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found = match_sysfs_device(name, name_len, working_path, dev, depth + 1); |
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if (found > 0) |
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break; |
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} |
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} |
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free(working_path); |
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free(entry); |
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closedir(dirp); |
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return found; |
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} |
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const char *rootdev_get_partition(const char *dst, size_t len) { |
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const char *end = dst + strnlen(dst, len); |
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const char *part = end - 1; |
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if (!len) |
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return NULL; |
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if (!isdigit(*part--)) |
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return NULL; |
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while (part > dst && isdigit(*part)) part--; |
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part++; |
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if (part >= end) |
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return NULL; |
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return part; |
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} |
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void rootdev_strip_partition(char *dst, size_t len) { |
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char *part = (char *)rootdev_get_partition(dst, len); |
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if (!part) |
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return; |
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/* For devices that end with a digit, the kernel uses a 'p' |
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* as a separator. E.g., mmcblk1p2. */ |
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if (*(part - 1) == 'p') |
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part--; |
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*part = '\0'; |
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} |
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int rootdev_symlink_active(const char *path) { |
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int ret = 0; |
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/* Don't overwrite an existing link. */ |
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errno = 0; |
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if ((symlink(path, kActiveRoot)) && errno != EEXIST) { |
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warn("failed to symlink %s -> %s", kActiveRoot, path); |
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ret = -1; |
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} |
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return ret; |
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} |
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int rootdev_get_device(char *dst, size_t size, dev_t dev, |
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const char *search) { |
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struct stat active_root_statbuf; |
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if (search == NULL) |
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search = kDefaultSearchPath; |
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/* Check if the -s symlink exists. */ |
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if ((stat(kActiveRoot, &active_root_statbuf) == 0) && |
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active_root_statbuf.st_rdev == dev) { |
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/* Note, if the link is not fully qualified, this won't be |
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* either. */ |
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ssize_t len = readlink(kActiveRoot, dst, PATH_MAX); |
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if (len > 0) { |
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dst[len] = 0; |
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return 0; |
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} |
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/* If readlink fails or is empty, fall through */ |
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} |
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snprintf(dst, size, "%s", search); |
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if (match_sysfs_device(dst, size, dst, &dev, 0) <= 0) { |
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fprintf (stderr, "unable to find match\n"); |
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return 1; |
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} |
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return 0; |
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} |
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/* |
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* rootdev_get_device_slave returns results in slave which |
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* may be the original device or the name of the slave. |
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* |
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* Because slave and device may point to the same data, |
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* must be careful how they are handled because slave |
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* is modified (can't use snprintf). |
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*/ |
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void rootdev_get_device_slave(char *slave, size_t size, dev_t *dev, |
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const char *device, const char *search) { |
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char dst[PATH_MAX]; |
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int len = 0; |
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int i; |
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if (search == NULL) |
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search = kDefaultSearchPath; |
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/* |
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* With stacked device mappers, we have to chain through all the levels |
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* and find the last device. For example, verity can be stacked on bootcache |
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* that is stacked on a disk partition. |
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*/ |
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if (slave != device) |
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strncpy(slave, device, size); |
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slave[size - 1] = '\0'; |
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for (i = 0; i < MAX_SLAVE_DEPTH; i++) { |
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len = snprintf(dst, sizeof(dst), "%s/%s/slaves", search, slave); |
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if (len != strlen(device) + strlen(search) + 8) { |
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warnx("rootdev_get_device_slave: device name too long"); |
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return; |
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} |
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*dev = 0; |
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if (match_sysfs_device(slave, size, dst, dev, 0) <= 0) { |
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return; |
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} |
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} |
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warnx("slave depth greater than %d at %s", i, slave); |
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} |
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int rootdev_create_devices(const char *name, dev_t dev, bool symlink) { |
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int ret = 0; |
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unsigned int major_num = major(dev); |
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unsigned int minor_num = minor(dev); |
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int i; |
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const struct part_config *config; |
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const char *part_s = rootdev_get_partition(name, strlen(name)); |
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if (part_s == NULL) { |
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warnx("create_devices: unable to determine partition"); |
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return -1; |
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} |
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switch (atoi(part_s)) { |
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case CHROMEOS_PRIMARY_PARTITION: |
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config = kPrimaryPart; |
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break; |
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case CHROMEOS_SECONDARY_PARTITION: |
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config = kSecondaryPart; |
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break; |
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default: |
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warnx("create_devices: unable to determine partition: %s", |
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part_s); |
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return -1; |
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} |
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for (i = 0; i < kPartitionEntries; ++i) { |
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dev = makedev(major_num, minor_num + config[i].offset); |
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errno = 0; |
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if (mknod(config[i].name, |
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S_IFBLK | S_IRUSR | S_IWUSR | S_IRGRP | S_IROTH, |
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dev) && errno != EEXIST) { |
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warn("failed to create %s", config[i].name); |
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return -1; |
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} |
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} |
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if (symlink) |
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ret = rootdev_symlink_active(config[0].name); |
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return ret; |
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} |
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int rootdev_get_path(char *path, size_t size, const char *device, |
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const char *dev_path) { |
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int path_len; |
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if (!dev_path) |
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dev_path = kDefaultDevPath; |
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if (!path || !size || !device) |
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return -1; |
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path_len = snprintf(path, size, "%s/%s", dev_path, device); |
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if (path_len != strlen(dev_path) + 1 + strlen(device)) |
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return -1; |
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// TODO(bsimonnet): We should check that |path| exists and is the right |
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// device. We don't do this currently as OEMs can add custom SELinux rules |
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// which may prevent us from accessing this. |
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// See b/24267261. |
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return 0; |
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} |
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int rootdev_wrapper(char *path, size_t size, |
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bool full, bool strip, |
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dev_t *dev, |
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const char *search, const char *dev_path) { |
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int res = 0; |
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char devname[PATH_MAX]; |
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if (!search) |
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search = kDefaultSearchPath; |
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if (!dev_path) |
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dev_path = kDefaultDevPath; |
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if (!dev) |
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return -1; |
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res = rootdev_get_device(devname, sizeof(devname), *dev, search); |
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if (res != 0) |
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return res; |
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if (full) |
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rootdev_get_device_slave(devname, sizeof(devname), dev, devname, |
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search); |
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/* TODO(wad) we should really just track the block dev, partition number, and |
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* dev path. When we rewrite this, we can track all the sysfs info |
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* in the class. */ |
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if (strip) { |
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/* When we strip the partition, we don't want get_path to return non-zero |
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* because of dev mismatch. Passing in 0 tells it to not test. */ |
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*dev = 0; |
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rootdev_strip_partition(devname, size); |
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} |
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res = rootdev_get_path(path, size, devname, dev_path); |
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return res; |
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} |
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int rootdev(char *path, size_t size, bool full, bool strip) { |
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struct stat root_statbuf; |
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dev_t _root_dev, *root_dev = &_root_dev; |
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/* Yields the containing dev_t in st_dev. */ |
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if (stat("/data", &root_statbuf) != 0) |
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return -1; |
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/* Some ABIs (like mips o32) are broken and the st_dev field isn't actually |
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* a dev_t. In that case, pass a pointer to a local dev_t who we took care |
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* of truncating the value into. On sane arches, gcc can optimize this to |
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* the same code, so should only be a penalty when the ABI is broken. */ |
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if (sizeof(root_statbuf.st_dev) == sizeof(*root_dev)) { |
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/* Cast is OK since we verified size here. */ |
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root_dev = (dev_t *)&root_statbuf.st_dev; |
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} else { |
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*root_dev = root_statbuf.st_dev; |
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} |
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return rootdev_wrapper(path, |
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size, |
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full, |
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strip, |
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root_dev, |
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NULL, /* default /sys dir */ |
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NULL); /* default /dev dir */ |
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}
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