b23adfd4ee
Signed-off-by: Thomas Lamprecht <t.lamprecht@proxmox.com>
328 lines
9.6 KiB
Rust
328 lines
9.6 KiB
Rust
use std::collections::HashSet;
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use anyhow::{bail, Error};
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use bitflags::bitflags;
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use endian_trait::Endian;
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use serde::{Deserialize, Serialize};
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use serde_json::Value;
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use proxmox_uuid::Uuid;
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use pbs_api_types::{ScsiTapeChanger, SLOT_ARRAY_SCHEMA};
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pub mod linux_list_drives;
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pub mod sgutils2;
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mod blocked_reader;
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pub use blocked_reader::BlockedReader;
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mod blocked_writer;
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pub use blocked_writer::BlockedWriter;
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mod tape_write;
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pub use tape_write::*;
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mod tape_read;
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pub use tape_read::*;
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mod emulate_tape_reader;
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pub use emulate_tape_reader::EmulateTapeReader;
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mod emulate_tape_writer;
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pub use emulate_tape_writer::EmulateTapeWriter;
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pub mod sg_tape;
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pub mod sg_pt_changer;
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/// We use 256KB blocksize (always)
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pub const PROXMOX_TAPE_BLOCK_SIZE: usize = 256 * 1024;
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// openssl::sha::sha256(b"Proxmox Tape Block Header v1.0")[0..8]
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pub const PROXMOX_TAPE_BLOCK_HEADER_MAGIC_1_0: [u8; 8] = [220, 189, 175, 202, 235, 160, 165, 40];
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// openssl::sha::sha256(b"Proxmox Backup Content Header v1.0")[0..8];
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pub const PROXMOX_BACKUP_CONTENT_HEADER_MAGIC_1_0: [u8; 8] = [99, 238, 20, 159, 205, 242, 155, 12];
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// openssl::sha::sha256(b"Proxmox Backup Tape Label v1.0")[0..8];
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pub const PROXMOX_BACKUP_MEDIA_LABEL_MAGIC_1_0: [u8; 8] = [42, 5, 191, 60, 176, 48, 170, 57];
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// openssl::sha::sha256(b"Proxmox Backup MediaSet Label v1.0")
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pub const PROXMOX_BACKUP_MEDIA_SET_LABEL_MAGIC_1_0: [u8; 8] = [8, 96, 99, 249, 47, 151, 83, 216];
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/// Tape Block Header with data payload
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///
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/// All tape files are written as sequence of blocks.
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///
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/// Note: this struct is large, never put this on the stack!
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/// so we use an unsized type to avoid that.
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///
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/// Tape data block are always read/written with a fixed size
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/// (`PROXMOX_TAPE_BLOCK_SIZE`). But they may contain less data, so the
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/// header has an additional size field. For streams of blocks, there
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/// is a sequence number (`seq_nr`) which may be use for additional
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/// error checking.
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#[repr(C, packed)]
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pub struct BlockHeader {
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/// fixed value `PROXMOX_TAPE_BLOCK_HEADER_MAGIC_1_0`
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pub magic: [u8; 8],
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pub flags: BlockHeaderFlags,
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/// size as 3 bytes unsigned, little endian
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pub size: [u8; 3],
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/// block sequence number
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pub seq_nr: u32,
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pub payload: [u8],
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}
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bitflags! {
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/// Header flags (e.g. `END_OF_STREAM` or `INCOMPLETE`)
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pub struct BlockHeaderFlags: u8 {
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/// Marks the last block in a stream.
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const END_OF_STREAM = 0b00000001;
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/// Mark multivolume streams (when set in the last block)
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const INCOMPLETE = 0b00000010;
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}
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}
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#[derive(Endian, Copy, Clone, Debug)]
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#[repr(C, packed)]
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/// Media Content Header
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///
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/// All tape files start with this header. The header may contain some
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/// informational data indicated by `size`.
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///
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/// `| MediaContentHeader | header data (size) | stream data |`
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///
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/// Note: The stream data following may be of any size.
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pub struct MediaContentHeader {
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/// fixed value `PROXMOX_BACKUP_CONTENT_HEADER_MAGIC_1_0`
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pub magic: [u8; 8],
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/// magic number for the content following
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pub content_magic: [u8; 8],
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/// unique ID to identify this data stream
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pub uuid: [u8; 16],
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/// stream creation time
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pub ctime: i64,
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/// Size of header data
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pub size: u32,
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/// Part number for multipart archives.
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pub part_number: u8,
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/// Reserved for future use
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pub reserved_0: u8,
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/// Reserved for future use
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pub reserved_1: u8,
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/// Reserved for future use
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pub reserved_2: u8,
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}
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impl MediaContentHeader {
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/// Create a new instance with autogenerated Uuid
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pub fn new(content_magic: [u8; 8], size: u32) -> Self {
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let uuid = *Uuid::generate().into_inner();
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Self {
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magic: PROXMOX_BACKUP_CONTENT_HEADER_MAGIC_1_0,
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content_magic,
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uuid,
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ctime: proxmox_time::epoch_i64(),
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size,
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part_number: 0,
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reserved_0: 0,
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reserved_1: 0,
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reserved_2: 0,
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}
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}
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/// Helper to check magic numbers and size constraints
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pub fn check(&self, content_magic: [u8; 8], min_size: u32, max_size: u32) -> Result<(), Error> {
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if self.magic != PROXMOX_BACKUP_CONTENT_HEADER_MAGIC_1_0 {
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bail!("MediaContentHeader: wrong magic");
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}
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if self.content_magic != content_magic {
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bail!("MediaContentHeader: wrong content magic");
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}
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if self.size < min_size || self.size > max_size {
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bail!("MediaContentHeader: got unexpected size");
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}
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Ok(())
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}
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/// Returns the content Uuid
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pub fn content_uuid(&self) -> Uuid {
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Uuid::from(self.uuid)
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}
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}
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impl BlockHeader {
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pub const SIZE: usize = PROXMOX_TAPE_BLOCK_SIZE;
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/// Allocates a new instance on the heap
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pub fn new() -> Box<Self> {
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use std::alloc::{alloc_zeroed, Layout};
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// align to PAGESIZE, so that we can use it with SG_IO
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let page_size = unsafe { libc::sysconf(libc::_SC_PAGESIZE) } as usize;
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let mut buffer = unsafe {
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let ptr = alloc_zeroed(Layout::from_size_align(Self::SIZE, page_size).unwrap());
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Box::from_raw(
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std::slice::from_raw_parts_mut(ptr, Self::SIZE - 16) as *mut [u8] as *mut Self,
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)
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};
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buffer.magic = PROXMOX_TAPE_BLOCK_HEADER_MAGIC_1_0;
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buffer
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}
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/// Set the `size` field
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pub fn set_size(&mut self, size: usize) {
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let size = size.to_le_bytes();
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self.size.copy_from_slice(&size[..3]);
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}
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/// Returns the `size` field
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pub fn size(&self) -> usize {
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(self.size[0] as usize) + ((self.size[1] as usize) << 8) + ((self.size[2] as usize) << 16)
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}
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/// Set the `seq_nr` field
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pub fn set_seq_nr(&mut self, seq_nr: u32) {
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self.seq_nr = seq_nr.to_le();
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}
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/// Returns the `seq_nr` field
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pub fn seq_nr(&self) -> u32 {
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u32::from_le(self.seq_nr)
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}
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}
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/// Changer element status.
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///
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/// Drive and slots may be `Empty`, or contain some media, either
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/// with known volume tag `VolumeTag(String)`, or without (`Full`).
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#[derive(Serialize, Deserialize, Debug)]
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pub enum ElementStatus {
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Empty,
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Full,
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VolumeTag(String),
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}
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/// Changer drive status.
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#[derive(Serialize, Deserialize)]
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pub struct DriveStatus {
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/// The slot the element was loaded from (if known).
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pub loaded_slot: Option<u64>,
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/// The status.
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pub status: ElementStatus,
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/// Drive Identifier (Serial number)
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pub drive_serial_number: Option<String>,
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/// Drive Vendor
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pub vendor: Option<String>,
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/// Drive Model
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pub model: Option<String>,
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/// Element Address
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pub element_address: u16,
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}
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/// Storage element status.
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#[derive(Serialize, Deserialize)]
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pub struct StorageElementStatus {
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/// Flag for Import/Export slots
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pub import_export: bool,
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/// The status.
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pub status: ElementStatus,
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/// Element Address
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pub element_address: u16,
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}
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/// Transport element status.
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#[derive(Serialize, Deserialize)]
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pub struct TransportElementStatus {
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/// The status.
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pub status: ElementStatus,
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/// Element Address
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pub element_address: u16,
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}
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/// Changer status - show drive/slot usage
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#[derive(Serialize, Deserialize)]
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pub struct MtxStatus {
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/// List of known drives
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pub drives: Vec<DriveStatus>,
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/// List of known storage slots
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pub slots: Vec<StorageElementStatus>,
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/// Transport elements
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///
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/// Note: Some libraries do not report transport elements.
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pub transports: Vec<TransportElementStatus>,
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}
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impl MtxStatus {
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pub fn slot_address(&self, slot: u64) -> Result<u16, Error> {
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if slot == 0 {
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bail!("invalid slot number '{}' (slots numbers starts at 1)", slot);
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}
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if slot > (self.slots.len() as u64) {
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bail!(
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"invalid slot number '{}' (max {} slots)",
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slot,
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self.slots.len()
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);
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}
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Ok(self.slots[(slot - 1) as usize].element_address)
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}
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pub fn drive_address(&self, drivenum: u64) -> Result<u16, Error> {
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if drivenum >= (self.drives.len() as u64) {
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bail!("invalid drive number '{}'", drivenum);
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}
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Ok(self.drives[drivenum as usize].element_address)
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}
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pub fn transport_address(&self) -> u16 {
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// simply use first transport
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// (are there changers exposing more than one?)
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// defaults to 0 for changer that do not report transports
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self.transports
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.get(0)
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.map(|t| t.element_address)
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.unwrap_or(0u16)
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}
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pub fn find_free_slot(&self, import_export: bool) -> Option<u64> {
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let mut free_slot = None;
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for (i, slot_info) in self.slots.iter().enumerate() {
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if slot_info.import_export != import_export {
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continue; // skip slots of wrong type
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}
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if let ElementStatus::Empty = slot_info.status {
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free_slot = Some((i + 1) as u64);
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break;
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}
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}
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free_slot
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}
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pub fn mark_import_export_slots(&mut self, config: &ScsiTapeChanger) -> Result<(), Error> {
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let mut export_slots: HashSet<u64> = HashSet::new();
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if let Some(slots) = &config.export_slots {
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let slots: Value = SLOT_ARRAY_SCHEMA.parse_property_string(slots)?;
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export_slots = slots
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.as_array()
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.unwrap()
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.iter()
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.filter_map(|v| v.as_u64())
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.collect();
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}
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for (i, entry) in self.slots.iter_mut().enumerate() {
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let slot = i as u64 + 1;
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if export_slots.contains(&slot) {
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entry.import_export = true; // mark as IMPORT/EXPORT
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}
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}
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Ok(())
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}
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}
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