mirror of
https://github.com/uqbar-dao/nectar.git
synced 2024-12-23 08:32:23 +03:00
vfs: fix hang
This commit is contained in:
parent
872b15fda2
commit
384760b23c
@ -16,8 +16,7 @@ pub async fn load_fs(
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home_directory_path: String,
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file_key: Vec<u8>,
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fs_config: FsConfig,
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vfs_message_sender: MessageSender,
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) -> Result<(ProcessMap, Manifest), FsError> {
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) -> Result<(ProcessMap, Manifest, Vec<KernelMessage>), FsError> {
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// load/create fs directory, manifest + log if none.
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let fs_directory_path_str = format!("{}/fs", &home_directory_path);
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@ -66,7 +65,7 @@ pub async fn load_fs(
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let mut process_map: ProcessMap = HashMap::new();
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// get current processes' wasm_bytes handles. GetState(kernel)
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match manifest.read(&kernel_process_id, None, None).await {
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let vfs_messages = match manifest.read(&kernel_process_id, None, None).await {
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Err(_) => {
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// bootstrap filesystem
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bootstrap(
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@ -74,17 +73,17 @@ pub async fn load_fs(
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&kernel_process_id,
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&mut process_map,
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&mut manifest,
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&vfs_message_sender,
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)
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.await
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.expect("fresh bootstrap failed!");
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.expect("fresh bootstrap failed!")
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}
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Ok(bytes) => {
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process_map = bincode::deserialize(&bytes).expect("state map deserialization error!");
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vec![]
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}
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}
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};
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Ok((process_map, manifest))
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Ok((process_map, manifest, vfs_messages))
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}
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/// function run only upon fresh boot.
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@ -100,8 +99,7 @@ async fn bootstrap(
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kernel_process_id: &FileIdentifier,
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process_map: &mut ProcessMap,
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manifest: &mut Manifest,
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vfs_message_sender: &MessageSender,
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) -> Result<()> {
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) -> Result<Vec<KernelMessage>> {
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println!("bootstrapping node...\r");
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const RUNTIME_MODULES: [(&str, bool); 8] = [
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("filesystem:sys:uqbar", false),
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@ -109,7 +107,7 @@ async fn bootstrap(
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("http_client:sys:uqbar", false),
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("encryptor:sys:uqbar", false),
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("net:sys:uqbar", false),
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("vfs:sys:uqbar", false),
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("vfs:sys:uqbar", true),
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("kernel:sys:uqbar", false),
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("eth_rpc:sys:uqbar", true), // TODO evaluate
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];
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@ -144,6 +142,7 @@ async fn bootstrap(
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public: runtime_module.1,
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});
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}
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println!("fs bs: runtime process_map {:#?}\r", process_map);
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let packages: Vec<(String, zip::ZipArchive<std::io::Cursor<Vec<u8>>>)> =
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get_zipped_packages().await;
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@ -151,38 +150,37 @@ async fn bootstrap(
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// need to grant all caps at the end, after process_map has been filled in!
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let mut caps_to_grant = Vec::<(ProcessId, Capability)>::new();
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let mut vfs_messages = Vec::new();
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for (package_name, mut package) in packages {
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println!("fs: handling package {package_name}...\r");
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// create a new package in VFS
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vfs_message_sender
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.send(KernelMessage {
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id: rand::random(),
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source: Address {
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node: our_name.to_string(),
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process: FILESYSTEM_PROCESS_ID.clone(),
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},
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target: Address {
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node: our_name.to_string(),
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process: VFS_PROCESS_ID.clone(),
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},
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rsvp: None,
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message: Message::Request(Request {
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inherit: false,
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expects_response: None,
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ipc: Some(
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serde_json::to_string::<VfsRequest>(&VfsRequest {
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drive: package_name.clone(),
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action: VfsAction::New,
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})
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.unwrap(),
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),
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metadata: None,
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}),
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payload: None,
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signed_capabilities: None,
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})
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.await
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.unwrap();
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vfs_messages.push(KernelMessage {
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id: rand::random(),
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source: Address {
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node: our_name.to_string(),
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process: FILESYSTEM_PROCESS_ID.clone(),
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},
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target: Address {
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node: our_name.to_string(),
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process: VFS_PROCESS_ID.clone(),
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},
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rsvp: None,
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message: Message::Request(Request {
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inherit: false,
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expects_response: None,
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ipc: Some(
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serde_json::to_string::<VfsRequest>(&VfsRequest {
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drive: package_name.clone(),
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action: VfsAction::New,
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})
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.unwrap(),
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),
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metadata: None,
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}),
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payload: None,
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signed_capabilities: None,
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});
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// for each file in package.zip, recursively through all dirs, send a newfile KM to VFS
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for i in 0..package.len() {
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let mut file = package.by_index(i).unwrap();
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@ -198,41 +196,38 @@ async fn bootstrap(
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println!("fs: found file {}...\r", file_path);
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let mut file_content = Vec::new();
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file.read_to_end(&mut file_content).unwrap();
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vfs_message_sender
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.send(KernelMessage {
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id: rand::random(),
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source: Address {
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node: our_name.to_string(),
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process: FILESYSTEM_PROCESS_ID.clone(),
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},
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target: Address {
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node: our_name.to_string(),
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process: VFS_PROCESS_ID.clone(),
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},
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rsvp: None,
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message: Message::Request(Request {
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inherit: false,
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expects_response: None,
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ipc: Some(
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serde_json::to_string::<VfsRequest>(&VfsRequest {
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drive: package_name.clone(),
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action: VfsAction::Add {
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full_path: file_path,
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entry_type: AddEntryType::NewFile,
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},
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})
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.unwrap(),
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),
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metadata: None,
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}),
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payload: Some(Payload {
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mime: None,
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bytes: file_content,
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}),
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signed_capabilities: None,
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})
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.await
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.unwrap();
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vfs_messages.push(KernelMessage {
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id: rand::random(),
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source: Address {
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node: our_name.to_string(),
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process: FILESYSTEM_PROCESS_ID.clone(),
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},
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target: Address {
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node: our_name.to_string(),
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process: VFS_PROCESS_ID.clone(),
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},
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rsvp: None,
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message: Message::Request(Request {
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inherit: false,
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expects_response: None,
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ipc: Some(
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serde_json::to_string::<VfsRequest>(&VfsRequest {
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drive: package_name.clone(),
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action: VfsAction::Add {
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full_path: file_path,
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entry_type: AddEntryType::NewFile,
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},
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})
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.unwrap(),
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),
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metadata: None,
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}),
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payload: Some(Payload {
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mime: None,
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bytes: file_content,
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}),
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signed_capabilities: None,
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});
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}
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}
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@ -376,7 +371,7 @@ async fn bootstrap(
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.write(&kernel_process_id, &serialized_process_map)
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.await;
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}
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Ok(())
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Ok(vfs_messages)
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}
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/// go into /target folder and get all .zip package files
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@ -1751,7 +1751,7 @@ async fn make_event_loop(
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);
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senders.insert(
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t::ProcessId::new(Some("vfs"), "sys", "uqbar"),
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ProcessSender::Runtime(send_to_vfs.clone()),
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ProcessSender::Runtime(send_to_vfs),
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);
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// each running process is stored in this map
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@ -2009,10 +2009,12 @@ async fn make_event_loop(
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}
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match senders.get(&kernel_message.target.process) {
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Some(ProcessSender::Userspace(sender)) => {
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println!("el: sending to {}\r", kernel_message.target.process);
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// TODO: should this failing should crash kernel? probably not
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sender.send(Ok(kernel_message)).await.unwrap();
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}
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Some(ProcessSender::Runtime(sender)) => {
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println!("el: sending to {}\r", kernel_message.target.process);
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sender.send(kernel_message).await.expect("fatal: runtime module died");
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}
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None => {
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@ -373,12 +373,11 @@ async fn main() {
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)
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};
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let (kernel_process_map, manifest) = filesystem::load_fs(
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let (kernel_process_map, manifest, vfs_messages) = filesystem::load_fs(
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our.name.clone(),
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home_directory_path.clone(),
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file_key,
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fs_config,
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vfs_message_sender.clone(),
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)
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.await
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.expect("fs load failed!");
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@ -466,6 +465,7 @@ async fn main() {
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print_sender.clone(),
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vfs_message_receiver,
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caps_oracle_sender.clone(),
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vfs_messages,
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));
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tasks.spawn(encryptor::encryptor(
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our.name.clone(),
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70
src/vfs.rs
70
src/vfs.rs
@ -25,8 +25,8 @@ struct Vfs {
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key_to_entry: KeyToEntry,
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path_to_key: PathToKey,
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}
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type IdentifierToVfs = HashMap<String, Arc<Mutex<Vfs>>>;
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type IdentifierToVfsSerializable = HashMap<String, Vfs>;
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type DriveToVfs = HashMap<String, Arc<Mutex<Vfs>>>;
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type DriveToVfsSerializable = HashMap<String, Vfs>;
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#[derive(Clone, Debug, Deserialize, Serialize)]
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struct Entry {
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@ -120,8 +120,8 @@ fn make_error_message(
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}
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}
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async fn state_to_bytes(state: &IdentifierToVfs) -> Vec<u8> {
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let mut serializable: IdentifierToVfsSerializable = HashMap::new();
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async fn state_to_bytes(state: &DriveToVfs) -> Vec<u8> {
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let mut serializable: DriveToVfsSerializable = HashMap::new();
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for (id, vfs) in state.iter() {
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let vfs = vfs.lock().await;
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serializable.insert(id.clone(), (*vfs).clone());
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@ -129,14 +129,14 @@ async fn state_to_bytes(state: &IdentifierToVfs) -> Vec<u8> {
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bincode::serialize(&serializable).unwrap()
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}
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fn bytes_to_state(bytes: &Vec<u8>, state: &mut IdentifierToVfs) {
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let serializable: IdentifierToVfsSerializable = bincode::deserialize(&bytes).unwrap();
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fn bytes_to_state(bytes: &Vec<u8>, state: &mut DriveToVfs) {
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let serializable: DriveToVfsSerializable = bincode::deserialize(&bytes).unwrap();
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for (id, vfs) in serializable.into_iter() {
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state.insert(id, Arc::new(Mutex::new(vfs)));
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}
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}
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async fn persist_state(our_node: String, send_to_loop: &MessageSender, state: &IdentifierToVfs) {
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async fn persist_state(our_node: String, send_to_loop: &MessageSender, state: &DriveToVfs) {
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let _ = send_to_loop
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.send(KernelMessage {
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id: rand::random(),
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@ -169,13 +169,12 @@ async fn persist_state(our_node: String, send_to_loop: &MessageSender, state: &I
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async fn load_state_from_reboot(
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our_node: String,
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send_to_loop: &MessageSender,
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mut recv_from_loop: MessageReceiver,
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drive_to_vfs: &mut IdentifierToVfs,
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id: u64,
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) -> bool {
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mut recv_from_loop: &mut MessageReceiver,
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drive_to_vfs: &mut DriveToVfs,
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) {
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let _ = send_to_loop
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.send(KernelMessage {
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id,
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id: rand::random(),
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source: Address {
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node: our_node.clone(),
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process: VFS_PROCESS_ID.clone(),
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@ -197,38 +196,47 @@ async fn load_state_from_reboot(
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signed_capabilities: None,
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})
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.await;
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println!("vfs lsfr 1\r");
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let km = recv_from_loop.recv().await;
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println!("vfs lsfr 2\r");
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let Some(km) = km else {
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return false;
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return ();
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};
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let KernelMessage {
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message, payload, ..
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} = km;
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let Message::Response((Response { ipc, .. }, None)) = message else {
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return false;
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println!("vfs lsfr f0\r");
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return ();
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};
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let Ok(Ok(FsResponse::GetState)) =
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serde_json::from_str::<Result<FsResponse, FsError>>(&ipc.unwrap_or_default())
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else {
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return false;
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println!("vfs lsfr f1\r");
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return ();
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};
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let Some(payload) = payload else {
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panic!("");
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};
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bytes_to_state(&payload.bytes, drive_to_vfs);
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let mut drive_to_vfs: DriveToVfs = HashMap::new();
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bytes_to_state(&payload.bytes, &mut drive_to_vfs);
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return true;
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println!("vfs lsfr 4\r");
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}
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async fn noop_future() -> Option<DriveToVfs> { None }
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pub async fn vfs(
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our_node: String,
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send_to_loop: MessageSender,
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send_to_terminal: PrintSender,
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mut recv_from_loop: MessageReceiver,
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send_to_caps_oracle: CapMessageSender,
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vfs_messages: Vec<KernelMessage>,
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) -> anyhow::Result<()> {
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let mut drive_to_vfs: IdentifierToVfs = HashMap::new();
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println!("vfs: begin\r");
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let mut drive_to_vfs: DriveToVfs = HashMap::new();
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let mut response_router: ResponseRouter = HashMap::new();
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let (send_vfs_task_done, mut recv_vfs_task_done): (
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tokio::sync::mpsc::Sender<u64>,
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@ -239,35 +247,33 @@ pub async fn vfs(
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tokio::sync::mpsc::Receiver<bool>,
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) = tokio::sync::mpsc::channel(VFS_PERSIST_STATE_CHANNEL_CAPACITY);
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let (response_sender, response_receiver): (MessageSender, MessageReceiver) =
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tokio::sync::mpsc::channel(VFS_RESPONSE_CHANNEL_CAPACITY);
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let first_message_id = rand::random();
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response_router.insert(first_message_id, response_sender);
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let is_reboot = load_state_from_reboot(
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load_state_from_reboot(
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our_node.clone(),
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&send_to_loop,
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response_receiver,
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&mut recv_from_loop,
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&mut drive_to_vfs,
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first_message_id,
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)
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.await;
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if !is_reboot {
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// initial boot
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// build_state_for_initial_boot(&process_map, &mut drive_to_vfs);
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send_persist_state.send(true).await.unwrap();
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).await;
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for vfs_message in vfs_messages {
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send_to_loop.send(vfs_message).await.unwrap();
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}
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println!("vfs entering loop\r");
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loop {
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tokio::select! {
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id_done = recv_vfs_task_done.recv() => {
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println!("vfs got\r");
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let Some(id_done) = id_done else { continue };
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response_router.remove(&id_done);
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continue;
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},
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_ = recv_persist_state.recv() => {
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println!("vfs got\r");
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persist_state(our_node.clone(), &send_to_loop, &drive_to_vfs).await;
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continue;
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},
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km = recv_from_loop.recv() => {
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println!("vfs got\r");
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let Some(km) = km else { continue };
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if let Some(response_sender) = response_router.remove(&km.id) {
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response_sender.send(km).await.unwrap();
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@ -555,6 +561,7 @@ async fn match_request(
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) -> Result<(Option<String>, Option<Vec<u8>>), VfsError> {
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Ok(match request.action {
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VfsAction::New => {
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println!("vfs: got New\r");
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for new_cap in new_caps {
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let _ = send_to_loop
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.send(KernelMessage {
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@ -586,6 +593,7 @@ async fn match_request(
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.await;
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}
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send_to_persist.send(true).await.unwrap();
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println!("vfs: done w New\r");
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(Some(serde_json::to_string(&VfsResponse::Ok).unwrap()), None)
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}
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VfsAction::Add {
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