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Side by Side Diff: bin/cros_make_image_bootable

Issue 3066037: build_image, mod_image_for_*: break out make_image_bootable (Closed) Base URL: http://src.chromium.org/git/crosutils.git
Patch Set: fix nits; move to boot.desc and bin/cros_ Created 10 years, 4 months ago
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1 #!/bin/bash
2 #
3 # Copyright (c) 2010 The Chromium OS Authors. All rights reserved.
4 # Use of this source code is governed by a BSD-style license that can be
5 # found in the LICENSE file.
6 #
7 # Script which ensures that a given image has an up-to-date
8 # kernel partition, rootfs integrity hashes, and legacy bootloader configs.
9
10 # Load common constants. This should be the first executable line.
11 # The path to common.sh should be relative to your script's location.
12 COMMON_PATH="$(dirname "$0")/../common.sh"
13 if [ ! -r "${COMMON_PATH}" ]; then
14 echo "ERROR! Cannot find common.sh: ${COMMON_PATH}" 1>&2
15 exit 1
16 fi
17 . "$(dirname "$0")/../common.sh"
18
19 set -e
20 . "$(dirname "$0")/../chromeos-common.sh" # for partoffset and partsize
21
22 if [ ${#} -ne 2 ]; then
23 die "Usage: $0 /path/to/image/dir image_name"
24 fi
25
26 BOOT_DESC_FILE="${1}/boot.desc"
27 IMAGE="${1}/${2}"
28
29 if [ ! -r "${BOOT_DESC_FILE}" ]; then
30 warning "${BOOT_DESC_FILE} cannot be read!"
31 warning "Falling back to command line parsing"
32 BOOT_DESC="${@}"
33 else
34 BOOT_DESC="$(cat ${BOOT_DESC_FILE} | tr -s '\n' ' ')"
35 info "Boot-time configuration for $(dirname ${IMAGE}): "
36 cat ${BOOT_DESC_FILE} | while read line; do
37 info " ${line}"
38 done
39 fi
40
41 if [ ! -r "${IMAGE}" ]; then
42 die "${IMAGE} cannot be read!"
43 fi
44
45 # Script must be run inside the chroot.
46 restart_in_chroot_if_needed $*
47
48 locate_gpt
49 set +e
50
51 # Now parse the build settings from ${OUTPUT_DIR}/boot.desc
52
53 DEFINE_string output_dir "/tmp" \
54 "Directory to place output in."
55 DEFINE_string image "chromiumos_base.img" \
56 "Full path to the chromiumos image to make bootable."
57 DEFINE_string arch "x86" \
58 "Architecture to make bootable for: arm or x86"
59 DEFINE_string usb_disk "/dev/sdb3" \
60 "Path syslinux should use to do a usb boot."
61 DEFINE_boolean cleanup_dirs ${FLAGS_TRUE} \
62 "Whether the mount dirs should be removed on completion."
63
64 DEFINE_integer rootfs_size 720 \
65 "rootfs filesystem size in MBs."
66 # ceil(0.1 * rootfs_size) is a good minimum.
67 DEFINE_integer rootfs_hash_pad 8 \
68 "MBs reserved at the end of the rootfs image."
69
70 DEFINE_string rootfs_hash "/tmp/rootfs.hash" \
71 "Path where the rootfs hash should be stored."
72 DEFINE_boolean enable_rootfs_verification ${FLAGS_FALSE} \
73 "Default all bootloaders to use kernel-based root fs integrity checking."
74 DEFINE_integer verity_error_behavior 2 \
75 "Kernel verified boot error behavior (0: I/O errors, 1: reboot, 2: nothing)"
76 DEFINE_integer verity_depth 1 \
77 "Kernel verified boot hash tree depth"
78 DEFINE_integer verity_max_ios 1024 \
79 "Number of outstanding I/O operations dm-verity caps at."
80 DEFINE_string verity_algorithm "sha1" \
81 "Cryptographic hash algorithm used for kernel vboot."
82
83 DEFINE_string keys_dir "/usr/share/vboot/devkeys" \
84 "Directory containing the signing keys."
85
86 DEFINE_string rootfs_mountpoint "/tmp/rootfs" \
87 "Path where the rootfs can be safely mounted"
88 DEFINE_string statefulfs_mountpoint "/tmp/statefulfs" \
89 "Path where the statefulfs can be safely mounted"
90 DEFINE_string espfs_mountpoint "/tmp/espfs" \
91 "Path where the espfs can be safely mounted"
92
93 # Parse the boot.desc
94 eval set -- "${BOOT_DESC}"
95 FLAGS "${@}" || exit 1
96 eval set -- "${FLAGS_ARGV}"
97
98 # Only now can we die on error. shflags functions leak non-zero error codes,
99 # so will die prematurely if 'set -e' is specified before now.
100 set -e -u
101
102 # $1 - Directory where developer rootfs is mounted.
103 # $2 - Directory where developer stateful_partition is mounted.
104 # $3 - Directory where the ESP partition is mounted.
105 mount_gpt_cleanup() {
106 local rootfs="${1-$FLAGS_rootfs_mountpoint}"
107 local statefs="${2-$FLAGS_statefulfs_mountpoint}"
108 local espfs="${3-$FLAGS_espfs_mountpoint}"
109 "${SCRIPTS_DIR}/mount_gpt_image.sh" \
110 -u -r "${rootfs}" -s "${statefs}" -e "${espfs}"
111 }
112
113 make_image_bootable() {
114 local image="$1"
115
116 cros_root=/dev/sd%D%P
117 if [[ "${FLAGS_arch}" = "arm" ]]; then
118 # TODO(wad) assumed like in build_gpt for now.
119 cros_root=/dev/mmcblk1p3
120 fi
121 if [[ ${FLAGS_enable_rootfs_verification} -eq ${FLAGS_TRUE} ]]; then
122 cros_root=/dev/dm-0
123 fi
124
125 trap "mount_gpt_cleanup" EXIT
126 ${SCRIPTS_DIR}/mount_gpt_image.sh --from "$(dirname ${image})" \
127 --image "$(basename ${image})" -r "${FLAGS_rootfs_mountpoint}" \
128 -s "${FLAGS_statefulfs_mountpoint}"
129
130 # The rootfs should never be mounted rw again after this point without
131 # re-calling make_image_bootable.
132 sudo mount -o remount,ro "${FLAGS_rootfs_mountpoint}"
133 root_dev=$(mount | grep -- "on ${FLAGS_rootfs_mountpoint} type" |
134 cut -f1 -d' ' | tail -1)
135
136 # Builds the kernel partition image. The temporary files are kept around
137 # so that we can perform a load_kernel_test later on the final image.
138 ${SCRIPTS_DIR}/build_kernel_image.sh \
139 --arch="${FLAGS_arch}" \
140 --to="${FLAGS_output_dir}/vmlinuz.image" \
141 --hd_vblock="${FLAGS_output_dir}/vmlinuz_hd.vblock" \
142 --vmlinuz="${FLAGS_rootfs_mountpoint}/boot/vmlinuz" \
143 --working_dir="${FLAGS_output_dir}" \
144 --keep_work \
145 --rootfs_image=${root_dev} \
146 --rootfs_hash=${FLAGS_rootfs_hash} \
147 --verity_hash_alg=${FLAGS_verity_algorithm} \
148 --verity_tree_depth=${FLAGS_verity_depth} \
149 --verity_max_ios=${FLAGS_verity_max_ios} \
150 --verity_error_behavior=${FLAGS_verity_error_behavior} \
151 --root=${cros_root} \
152 --keys_dir="${FLAGS_keys_dir}"
153
154 local rootfs_hash_size=$(stat -c '%s' ${FLAGS_rootfs_hash})
155 info "Appending rootfs.hash (${rootfs_hash_size} bytes) to the root fs"
156 if [[ ${rootfs_hash_size} -gt $((FLAGS_rootfs_hash_pad * 1024 * 1024)) ]]
157 then
158 die "--rootfs_hash_pad reserves less than the needed ${rootfs_hash_size}"
159 fi
160 # Unfortunately, mount_gpt_image uses mount and not losetup to create the
161 # loop devices. This means that they are not the correct size. We have to
162 # write directly to the image to append the hash tree data.
163 local hash_offset="$(partoffset ${image} 3)"
164 hash_offset=$((hash_offset + ((1024 * 1024 * ${FLAGS_rootfs_size}) / 512)))
165 sudo dd bs=512 \
166 seek=${hash_offset} \
167 if="${FLAGS_rootfs_hash}" \
168 of="${image}" \
169 conv=notrunc
170 # We don't need to keep the file around anymore.
171 sudo rm "${FLAGS_rootfs_hash}"
172
173 # Move the verification block needed for the hard disk install to the
174 # stateful partition. Mount stateful fs, copy file, and umount fs.
175 # In original CL: http://codereview.chromium.org/2868044, this was done in
176 # create_base_image(). However, it could break the build if it is a clean
177 # build because vmlinuz_hd.vblock hasn't been created by build_kernel_image.sh
178 if [[ "${FLAGS_arch}" = "x86" ]]; then
179 sudo cp "${FLAGS_output_dir}/vmlinuz_hd.vblock" \
180 "${FLAGS_statefulfs_mountpoint}"
181 fi
182
183 # START_KERN_A is set by the first call to install the gpt.
184 local koffset="$(partoffset ${image} 2)"
185 sudo dd if="${FLAGS_output_dir}/vmlinuz.image" of="${image}" \
186 conv=notrunc bs=512 seek=${koffset}
187
188 # Update the bootloaders. For legacy/efi x86, the EFI system partition
189 # will be updated and for arm, the mbr will be updated (for u-boot).
190 local kernel_part=
191 local bootloader_to=
192 local bootloader_to_flags=
193 local usb_disk="${FLAGS_usb_disk}"
194
195 if [[ "${FLAGS_arch}" = "x86" ]]; then
196 # x86 should update the esp in place in the image.
197 bootloader_to="${image}"
198 local esp_offset="$(partoffset ${image} 12)"
199 esp_offset=$((esp_offset * 512)) # sectors to bytes
200 local esp_size="$(partsize ${image} 12)"
201 esp_size=$((esp_size * 512)) # sectors to bytes
202 bootloader_to_flags="--to_offset=${esp_offset} --to_size=${esp_size}"
203 # Use the kernel partition to acquire configuration flags.
204 kernel_part="--kernel_partition='${FLAGS_output_dir}/vmlinuz.image'"
205 # Install syslinux on the EFI System Partition.
206 kernel_part="${kernel_part} --install_syslinux"
207 elif [[ "${FLAGS_arch}" = "arm" ]]; then
208 # TODO(wad) mmcblk1p3 is hardcoded for arm for now!
209 usb_disk="/dev/mmcblk1p3"
210 # ARM doesn't support using the kernel image for kernel cmdline flags yet.
211 kernel_part="--kernel_cmdline=\"${FLAGS_arm_extra_bootargs}\" "
212 # TODO(wad) Integrate dmtable extraction into the arm build
213 # E.g. $(cat ${FLAGS_output_dir}/boot.config | tr -s '\n' ' ')"
214 local kpart_offset="--kernel_partition_offset=${koffset}"
215 local kpart_size="--kernel_partition_sectors="
216 kpart_size="${kpart_size}$(partsize ${image} 2)"
217 kernel_part="${kernel_part} ${kpart_size} ${kpart_offset}"
218 info "Using addition bootloader arguments: ${kernel_part}"
219 bootloader_to="${FLAGS_output_dir}/arm.mbr"
220 fi
221
222 # Update partition 12 / legacy bootloaders and arm.
223 ${SCRIPTS_DIR}/update_bootloaders.sh \
224 --arch=${FLAGS_arch} \
225 --to="${bootloader_to}" \
226 --from="${FLAGS_rootfs_mountpoint}"/boot \
227 --vmlinuz="${FLAGS_rootfs_mountpoint}"/boot/vmlinuz \
228 --usb_disk="${usb_disk}" \
229 ${bootloader_to_flags} \
230 $kernel_part
231
232 if [[ "${FLAGS_arch}" == "arm" ]]; then
233 sudo dd bs=1 conv=notrunc if="${bootloader_to}" of="${image}"
234 sudo rm "${bootloader_to}"
235 fi
236
237 trap - EXIT
238 ${SCRIPTS_DIR}/mount_gpt_image.sh -u -r "${FLAGS_rootfs_mountpoint}" \
239 -s "${FLAGS_statefulfs_mountpoint}"
240 }
241
242 # Create the directories if they don't exist.
243 mkdir -p ${FLAGS_rootfs_mountpoint}
244 mkdir -p ${FLAGS_statefulfs_mountpoint}
245 mkdir -p ${FLAGS_espfs_mountpoint}
246
247 make_image_bootable ${IMAGE}
248
249 if [ ${FLAGS_cleanup_dirs} -eq ${FLAGS_TRUE} ]; then
250 rmdir ${FLAGS_rootfs_mountpoint}
251 rmdir ${FLAGS_statefulfs_mountpoint}
252 rmdir ${FLAGS_espfs_mountpoint}
253 fi
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