2020-04-17 12:11:25 +00:00
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use anyhow::{format_err, Error};
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2019-11-08 12:13:39 +00:00
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use std::io::{Read, Write, Seek, SeekFrom};
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use std::fs::File;
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2019-10-12 10:57:08 +00:00
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use std::sync::Arc;
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2019-11-08 11:40:10 +00:00
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use std::os::unix::fs::OpenOptionsExt;
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2019-10-12 10:57:08 +00:00
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use chrono::{DateTime, Utc};
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2019-12-17 09:52:07 +00:00
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use futures::future::AbortHandle;
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2019-10-12 10:57:08 +00:00
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use serde_json::{json, Value};
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use proxmox::tools::digest_to_hex;
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2019-10-12 13:50:26 +00:00
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use crate::backup::*;
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2019-10-12 10:57:08 +00:00
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use super::{HttpClient, H2Client};
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2019-10-12 11:26:47 +00:00
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/// Backup Reader
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2019-10-12 10:57:08 +00:00
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pub struct BackupReader {
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h2: H2Client,
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2019-12-17 09:52:07 +00:00
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abort: AbortHandle,
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2019-10-12 13:50:26 +00:00
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crypt_config: Option<Arc<CryptConfig>>,
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2019-10-12 10:57:08 +00:00
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}
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impl Drop for BackupReader {
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fn drop(&mut self) {
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2019-12-17 09:52:07 +00:00
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self.abort.abort();
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2019-10-12 10:57:08 +00:00
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}
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}
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impl BackupReader {
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2019-12-17 09:52:07 +00:00
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fn new(h2: H2Client, abort: AbortHandle, crypt_config: Option<Arc<CryptConfig>>) -> Arc<Self> {
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Arc::new(Self { h2, abort, crypt_config})
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2019-10-12 10:57:08 +00:00
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}
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2019-10-12 11:26:47 +00:00
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/// Create a new instance by upgrading the connection at '/api2/json/reader'
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2019-10-12 10:57:08 +00:00
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pub async fn start(
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client: HttpClient,
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2019-10-12 13:50:26 +00:00
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crypt_config: Option<Arc<CryptConfig>>,
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2019-10-12 10:57:08 +00:00
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datastore: &str,
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backup_type: &str,
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backup_id: &str,
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backup_time: DateTime<Utc>,
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debug: bool,
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) -> Result<Arc<BackupReader>, Error> {
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let param = json!({
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"backup-type": backup_type,
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"backup-id": backup_id,
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"backup-time": backup_time.timestamp(),
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"store": datastore,
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"debug": debug,
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});
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let req = HttpClient::request_builder(client.server(), "GET", "/api2/json/reader", Some(param)).unwrap();
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2019-12-17 09:52:07 +00:00
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let (h2, abort) = client.start_h2_connection(req, String::from(PROXMOX_BACKUP_READER_PROTOCOL_ID_V1!())).await?;
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2019-10-12 10:57:08 +00:00
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2019-12-17 09:52:07 +00:00
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Ok(BackupReader::new(h2, abort, crypt_config))
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2019-10-12 10:57:08 +00:00
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}
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2019-10-12 11:26:47 +00:00
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/// Execute a GET request
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2019-10-12 10:57:08 +00:00
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pub async fn get(
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&self,
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path: &str,
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param: Option<Value>,
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) -> Result<Value, Error> {
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self.h2.get(path, param).await
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}
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2019-10-12 11:26:47 +00:00
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/// Execute a PUT request
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2019-10-12 10:57:08 +00:00
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pub async fn put(
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&self,
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path: &str,
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param: Option<Value>,
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) -> Result<Value, Error> {
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self.h2.put(path, param).await
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}
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2019-10-12 11:26:47 +00:00
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/// Execute a POST request
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2019-10-12 10:57:08 +00:00
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pub async fn post(
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&self,
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path: &str,
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param: Option<Value>,
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) -> Result<Value, Error> {
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self.h2.post(path, param).await
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}
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2019-10-12 11:26:47 +00:00
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/// Execute a GET request and send output to a writer
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2019-10-12 10:57:08 +00:00
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pub async fn download<W: Write + Send>(
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&self,
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file_name: &str,
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output: W,
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2020-06-12 09:46:42 +00:00
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) -> Result<(), Error> {
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2019-10-12 10:57:08 +00:00
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let path = "download";
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let param = json!({ "file-name": file_name });
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self.h2.download(path, Some(param), output).await
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}
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2019-10-12 11:26:47 +00:00
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/// Execute a special GET request and send output to a writer
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///
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/// This writes random data, and is only useful to test download speed.
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2019-10-12 10:57:08 +00:00
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pub async fn speedtest<W: Write + Send>(
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&self,
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output: W,
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2020-06-12 09:46:42 +00:00
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) -> Result<(), Error> {
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2019-10-12 10:57:08 +00:00
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self.h2.download("speedtest", None, output).await
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}
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2019-10-12 11:26:47 +00:00
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/// Download a specific chunk
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2019-10-12 10:57:08 +00:00
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pub async fn download_chunk<W: Write + Send>(
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&self,
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digest: &[u8; 32],
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output: W,
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2020-06-12 09:46:42 +00:00
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) -> Result<(), Error> {
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2019-10-12 10:57:08 +00:00
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let path = "chunk";
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let param = json!({ "digest": digest_to_hex(digest) });
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self.h2.download(path, Some(param), output).await
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}
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pub fn force_close(self) {
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2019-12-17 09:52:07 +00:00
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self.abort.abort();
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2019-10-12 10:57:08 +00:00
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}
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2019-10-12 13:50:26 +00:00
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/// Download backup manifest (index.json)
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2019-10-13 08:09:12 +00:00
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pub async fn download_manifest(&self) -> Result<BackupManifest, Error> {
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use std::convert::TryFrom;
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2019-10-12 13:50:26 +00:00
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2020-06-12 09:46:42 +00:00
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let mut raw_data = Vec::with_capacity(64 * 1024);
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self.download(MANIFEST_BLOB_NAME, &mut raw_data).await?;
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2019-10-12 13:50:26 +00:00
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let blob = DataBlob::from_raw(raw_data)?;
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blob.verify_crc()?;
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let data = blob.decode(self.crypt_config.as_ref().map(Arc::as_ref))?;
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2019-10-13 08:09:12 +00:00
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let json: Value = serde_json::from_slice(&data[..])?;
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BackupManifest::try_from(json)
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2019-10-12 13:50:26 +00:00
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}
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2019-11-08 11:40:10 +00:00
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2019-11-08 12:13:39 +00:00
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/// Download a .blob file
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///
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2020-05-30 14:37:33 +00:00
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/// This creates a temporary file in /tmp (using O_TMPFILE). The data is verified using
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2019-11-08 12:13:39 +00:00
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/// the provided manifest.
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pub async fn download_blob(
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&self,
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manifest: &BackupManifest,
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name: &str,
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) -> Result<DataBlobReader<File>, Error> {
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2020-06-12 09:46:42 +00:00
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let mut tmpfile = std::fs::OpenOptions::new()
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2019-11-08 12:13:39 +00:00
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.write(true)
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.read(true)
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.custom_flags(libc::O_TMPFILE)
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.open("/tmp")?;
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2020-06-12 09:46:42 +00:00
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self.download(name, &mut tmpfile).await?;
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2019-11-08 12:13:39 +00:00
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let (csum, size) = compute_file_csum(&mut tmpfile)?;
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manifest.verify_file(name, &csum, size)?;
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tmpfile.seek(SeekFrom::Start(0))?;
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DataBlobReader::new(tmpfile, self.crypt_config.clone())
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}
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2019-11-08 11:40:10 +00:00
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/// Download dynamic index file
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///
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2020-05-30 14:37:33 +00:00
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/// This creates a temporary file in /tmp (using O_TMPFILE). The index is verified using
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2019-11-08 11:40:10 +00:00
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/// the provided manifest.
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pub async fn download_dynamic_index(
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&self,
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manifest: &BackupManifest,
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name: &str,
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) -> Result<DynamicIndexReader, Error> {
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2020-06-12 09:46:42 +00:00
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let mut tmpfile = std::fs::OpenOptions::new()
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2019-11-08 11:40:10 +00:00
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.write(true)
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.read(true)
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.custom_flags(libc::O_TMPFILE)
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.open("/tmp")?;
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2020-06-12 09:46:42 +00:00
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self.download(name, &mut tmpfile).await?;
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2019-11-08 11:40:10 +00:00
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let index = DynamicIndexReader::new(tmpfile)
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.map_err(|err| format_err!("unable to read dynamic index '{}' - {}", name, err))?;
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// Note: do not use values stored in index (not trusted) - instead, computed them again
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let (csum, size) = index.compute_csum();
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manifest.verify_file(name, &csum, size)?;
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Ok(index)
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}
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2019-11-08 11:43:56 +00:00
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/// Download fixed index file
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///
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2020-05-30 14:37:33 +00:00
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/// This creates a temporary file in /tmp (using O_TMPFILE). The index is verified using
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2019-11-08 11:43:56 +00:00
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/// the provided manifest.
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pub async fn download_fixed_index(
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&self,
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manifest: &BackupManifest,
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name: &str,
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) -> Result<FixedIndexReader, Error> {
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2020-06-12 09:46:42 +00:00
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let mut tmpfile = std::fs::OpenOptions::new()
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2019-11-08 11:43:56 +00:00
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.write(true)
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.read(true)
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.custom_flags(libc::O_TMPFILE)
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.open("/tmp")?;
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2020-06-12 09:46:42 +00:00
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self.download(name, &mut tmpfile).await?;
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2019-11-08 11:43:56 +00:00
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let index = FixedIndexReader::new(tmpfile)
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.map_err(|err| format_err!("unable to read fixed index '{}' - {}", name, err))?;
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// Note: do not use values stored in index (not trusted) - instead, computed them again
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let (csum, size) = index.compute_csum();
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manifest.verify_file(name, &csum, size)?;
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Ok(index)
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}
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2019-10-12 10:57:08 +00:00
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}
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2019-11-08 12:13:39 +00:00
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2020-01-05 13:50:54 +00:00
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pub fn compute_file_csum(file: &mut File) -> Result<([u8; 32], u64), Error> {
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2019-11-08 12:13:39 +00:00
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file.seek(SeekFrom::Start(0))?;
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let mut hasher = openssl::sha::Sha256::new();
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let mut buffer = proxmox::tools::vec::undefined(256*1024);
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let mut size: u64 = 0;
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loop {
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let count = match file.read(&mut buffer) {
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Ok(count) => count,
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Err(ref err) if err.kind() == std::io::ErrorKind::Interrupted => { continue; }
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Err(err) => return Err(err.into()),
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};
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if count == 0 {
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break;
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}
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size += count as u64;
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hasher.update(&buffer[..count]);
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}
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let csum = hasher.finish();
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Ok((csum, size))
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}
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