calculate image shasum
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dc9a49fd8a
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@ -57,7 +57,13 @@ fn main() {
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.about("Decompress a compressed image file")
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.about("Decompress a compressed image file")
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.arg(Arg::with_name("path")
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.arg(Arg::with_name("path")
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.required(true)
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.required(true)
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.help("Path to image file")));
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.help("Path to image file")))
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.subcommand(SubCommand::with_name("verify-shasum")
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.about("Verify the sha256 sum of the image")
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.arg(Arg::with_name("path")
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.required(true)
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.help("Path to image file")));
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set_verbose(true);
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set_verbose(true);
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let matches = app.get_matches();
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let matches = app.get_matches();
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@ -70,6 +76,7 @@ fn main() {
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("sign-image", Some(m)) => sign_image(m),
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("sign-image", Some(m)) => sign_image(m),
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("genkeys", Some(_)) => genkeys(),
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("genkeys", Some(_)) => genkeys(),
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("decompress", Some(m)) => decompress(m),
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("decompress", Some(m)) => decompress(m),
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("verify-shasum", Some(m)) => verify_shasum(m),
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("install-rootfs", Some(m)) => install_rootfs(m),
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("install-rootfs", Some(m)) => install_rootfs(m),
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_ => Ok(()),
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_ => Ok(()),
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};
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};
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@ -115,6 +122,19 @@ fn verify(arg_matches: &ArgMatches) -> Result<()> {
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Ok(())
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Ok(())
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}
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}
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fn verify_shasum(arg_matches: &ArgMatches) -> Result<()> {
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let img = load_image(arg_matches)?;
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let shasum = img.generate_shasum()?;
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if shasum == img.metainfo().shasum() {
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info!("Image has correct sha256sum: {}", shasum);
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} else {
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info!("Image sha256 sum does not match metainfo:");
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info!(" image: {}", shasum);
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info!(" metainfo: {}", img.metainfo().shasum())
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}
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Ok(())
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}
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fn load_image(arg_matches: &ArgMatches) -> Result<ResourceImage> {
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fn load_image(arg_matches: &ArgMatches) -> Result<ResourceImage> {
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let path = arg_matches.value_of("path").expect("path argument missing");
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let path = arg_matches.value_of("path").expect("path argument missing");
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if !Path::new(path).exists() {
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if !Path::new(path).exists() {
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@ -129,7 +149,13 @@ fn load_image(arg_matches: &ArgMatches) -> Result<ResourceImage> {
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fn install_rootfs(arg_matches: &ArgMatches) -> Result<()> {
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fn install_rootfs(arg_matches: &ArgMatches) -> Result<()> {
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let img = load_image(arg_matches)?;
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let img = load_image(arg_matches)?;
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let partition =choose_install_partition()?;
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img.header().verify_signature()?;
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let shasum = img.generate_shasum()?;
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if shasum != img.metainfo().shasum() {
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bail!("image file does not have expected sha256 value");
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}
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let partition = choose_install_partition()?;
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img.write_to_partition(&partition)?;
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img.write_to_partition(&partition)?;
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Ok(())
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Ok(())
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}
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}
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@ -142,7 +168,7 @@ fn sign_image(arg_matches: &ArgMatches) -> Result<()> {
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fn genkeys() -> Result<()> {
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fn genkeys() -> Result<()> {
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let keypair = KeyPair::generate()?;
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let keypair = KeyPair::generate()?;
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println!("public-key = \"{}\"", keypair.public_key_hex());
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println!("public-key = \"{}\"", keypair.public_key().to_hex());
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println!("private-key = \"{}\"", keypair.private_key_hex());
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println!("private-key = \"{}\"", keypair.private_key_hex());
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Ok(())
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Ok(())
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}
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}
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@ -100,11 +100,11 @@ impl ResourceImage {
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}
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}
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}
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}
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pub fn mount(&mut self, config: &Config) -> Result<()> {
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pub fn mount(&mut self) -> Result<()> {
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if CommandLine::noverity() {
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if CommandLine::noverity() {
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self.mount_noverity()?;
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self.mount_noverity()?;
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} else {
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} else {
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self.mount_verity(config)?;
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self.mount_verity()?;
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}
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}
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self.process_manifest_file()
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self.process_manifest_file()
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@ -122,32 +122,32 @@ impl ResourceImage {
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if !self.is_compressed() {
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if !self.is_compressed() {
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return Ok(())
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return Ok(())
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}
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}
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self.decompress_and_generate_hashtree(true)
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}
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// Avoid copying the body twice in the common case that image is both
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let tmpfile = self.extract_body_to_tmpfile()?;
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// compressed and needs hashtree generated.
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let decompressed = self.decompress_tmpfile(tmpfile)?;
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fn decompress_and_generate_hashtree(&self, decompress_only: bool) -> Result<()> {
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assert!(self.is_compressed());
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let mut tmpfile = self.extract_body_to_tmpfile(Some("xz"))?;
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util::xz_decompress(&tmpfile)?;
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tmpfile.set_extension("");
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self.header.clear_flag(ImageHeader::FLAG_DATA_COMPRESSED);
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self.header.clear_flag(ImageHeader::FLAG_DATA_COMPRESSED);
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self.write_image_from_tmpfile(&decompressed)?;
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if !decompress_only && !self.has_verity_hashtree() {
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Ok(())
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verity::generate_image_hashtree(&tmpfile, &self.metainfo)?;
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self.header.set_flag(ImageHeader::FLAG_HASH_TREE);
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}
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self.write_image_from_tmpfile(&tmpfile)
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}
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}
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fn extract_body_to_tmpfile(&self, extension: Option<&str>) -> Result<PathBuf> {
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fn decompress_tmpfile(&self, tmpfile: PathBuf) -> Result<PathBuf> {
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info!("Decompressing image contents");
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if !self.is_compressed() {
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return Ok(tmpfile);
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}
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util::xz_decompress(&tmpfile)?;
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let mut new_tmpfile = PathBuf::from(tmpfile);
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new_tmpfile.set_extension("");
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Ok(new_tmpfile)
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}
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fn extract_body_to_tmpfile(&self) -> Result<PathBuf> {
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let mut reader = File::open(&self.path)?;
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let mut reader = File::open(&self.path)?;
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reader.seek(SeekFrom::Start(4096))?;
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reader.seek(SeekFrom::Start(4096))?;
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fs::create_dir_all("/tmp/citadel-image-tmp")?;
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fs::create_dir_all("/tmp/citadel-image-tmp")?;
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let mut path = Path::new("/tmp/citadel-image-tmp").join(format!("{}-tmp", &self.metainfo.image_type()));
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let mut path = Path::new("/tmp/citadel-image-tmp").join(format!("{}-tmp", &self.metainfo.image_type()));
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if let Some(ext) = extension {
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if self.is_compressed() {
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path.set_extension(ext);
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path.set_extension("xz");
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}
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}
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let mut out = File::create(&path)?;
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let mut out = File::create(&path)?;
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io::copy(&mut reader, &mut out)?;
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io::copy(&mut reader, &mut out)?;
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@ -166,7 +166,7 @@ impl ResourceImage {
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info!("writing rootfs image to {}", partition.path().display());
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info!("writing rootfs image to {}", partition.path().display());
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let args = format!("if={} of={} bs=4096 skip=1",
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let args = format!("if={} of={} bs=4096 skip=1",
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self.path.display(), partition.path().display());
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self.path.display(), partition.path().display());
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util::exec_cmdline("/bin/dd", args)?;
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util::exec_cmdline_quiet("/bin/dd", args)?;
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self.header.set_status(ImageHeader::STATUS_NEW);
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self.header.set_status(ImageHeader::STATUS_NEW);
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self.header.write_partition(partition.path())?;
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self.header.write_partition(partition.path())?;
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@ -196,7 +196,8 @@ impl ResourceImage {
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pub fn setup_verity_device(&self) -> Result<PathBuf> {
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pub fn setup_verity_device(&self) -> Result<PathBuf> {
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if !CommandLine::nosignatures() {
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if !CommandLine::nosignatures() {
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self.header.verify_signature(config)?;
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self.header.verify_signature()?;
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info!("Image signature is valid for channel {}", self.metainfo.channel());
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}
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}
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info!("Setting up dm-verity device for image");
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info!("Setting up dm-verity device for image");
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if !self.has_verity_hashtree() {
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if !self.has_verity_hashtree() {
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@ -210,26 +211,44 @@ impl ResourceImage {
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return Ok(())
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return Ok(())
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}
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}
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info!("Generating dm-verity hash tree for image {}", self.path.display());
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info!("Generating dm-verity hash tree for image {}", self.path.display());
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let mut tmp = self.extract_body_to_tmpfile()?;
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if self.is_compressed() {
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if self.is_compressed() {
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info!("Image is compressed, so need to decompress first");
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tmp = self.decompress_tmpfile(tmp)?;
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self.decompress_and_generate_hashtree(false)
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self.header.clear_flag(ImageHeader::FLAG_DATA_COMPRESSED);
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} else {
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let tmpfile = self.extract_body_to_tmpfile(None)?;
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verity::generate_image_hashtree(&tmpfile, &self.metainfo)?;
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self.header.set_flag(ImageHeader::FLAG_HASH_TREE);
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self.write_image_from_tmpfile(&tmpfile)
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}
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}
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verity::generate_image_hashtree(&tmp, self.metainfo())?;
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self.header.set_flag(ImageHeader::FLAG_HASH_TREE);
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self.write_image_from_tmpfile(&tmp)?;
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Ok(())
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}
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}
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pub fn verify_verity(&self) -> Result<bool> {
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pub fn verify_verity(&self) -> Result<bool> {
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if !self.has_verity_hashtree() {
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if !self.has_verity_hashtree() {
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self.generate_verity_hashtree()?;
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self.generate_verity_hashtree()?;
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}
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}
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verity::verify_image(self.path(), &self.metainfo)
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info!("Verifying dm-verity hash tree");
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let tmp = self.extract_body_to_tmpfile()?;
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let ok = verity::verify_image(&tmp, &self.metainfo)?;
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fs::remove_file(tmp)?;
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Ok(ok)
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}
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}
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pub fn verify_shasum(&self) -> Result<bool> {
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pub fn generate_shasum(&self) -> Result<String> {
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unimplemented!();
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let mut tmp = self.extract_body_to_tmpfile()?;
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if self.is_compressed() {
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tmp = self.decompress_tmpfile(tmp)?;
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}
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info!("Calculating sha256 of image");
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if self.has_verity_hashtree() {
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let args = format!("if={} of={}.shainput bs=4096 count={}", tmp.display(), tmp.display(), self.metainfo.nblocks());
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util::exec_cmdline_quiet("/bin/dd", args)?;
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fs::remove_file(&tmp)?;
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tmp.set_extension("shainput");
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}
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let shasum = util::sha256(&tmp)?;
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fs::remove_file(tmp)?;
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Ok(shasum)
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}
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}
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// Mount the resource image but use a simple loop mount rather than setting up a dm-verity
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// Mount the resource image but use a simple loop mount rather than setting up a dm-verity
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