veilid/veilid-core/src/veilid_config.rs

981 lines
29 KiB
Rust
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2022-06-08 01:31:05 +00:00
use crate::*;
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use rkyv::{Archive as RkyvArchive, Deserialize as RkyvDeserialize, Serialize as RkyvSerialize};
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use serde::*;
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////////////////////////////////////////////////////////////////////////////////////////////////
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pub type ConfigCallbackReturn = Result<Box<dyn core::any::Any + Send>, VeilidAPIError>;
pub type ConfigCallback = Arc<dyn Fn(String) -> ConfigCallbackReturn + Send + Sync>;
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/// Enable and configure HTTPS access to the Veilid node
///
/// ```yaml
/// https:
/// enabled: false
/// listen_address: ':5150'
/// path: 'app'
/// url: 'https://localhost:5150'
/// ```
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigHTTPS {
pub enabled: bool,
pub listen_address: String,
pub path: String,
pub url: Option<String>, // Fixed URL is not optional for TLS-based protocols and is dynamically validated
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}
/// Enable and configure HTTP access to the Veilid node
///
/// ```yaml
/// http:
/// enabled: false
/// listen_address: ':5150'
/// path: 'app"
/// url: 'https://localhost:5150'
/// ```
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigHTTP {
pub enabled: bool,
pub listen_address: String,
pub path: String,
pub url: Option<String>,
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}
/// Application configuration
///
/// Configure web access to the Prograssive Web App (PWA)
///
/// To be implemented...
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigApplication {
pub https: VeilidConfigHTTPS,
pub http: VeilidConfigHTTP,
}
/// Enable and configure UDP
///
/// ```yaml
/// udp:
/// enabled: true
/// socket_pool_size: 0
/// listen_address: ':5150'
/// public_address: ''
/// ```
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigUDP {
pub enabled: bool,
pub socket_pool_size: u32,
pub listen_address: String,
pub public_address: Option<String>,
}
/// Enable and configure TCP
///
/// ```yaml
/// tcp:
/// connect: true
/// listen: true
/// max_connections: 32
/// listen_address: ':5150'
/// public_address: ''
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigTCP {
pub connect: bool,
pub listen: bool,
pub max_connections: u32,
pub listen_address: String,
pub public_address: Option<String>,
}
/// Enable and configure Web Sockets
///
/// ```yaml
/// ws:
/// connect: true
/// listen: true
/// max_connections: 16
/// listen_address: ':5150'
/// path: 'ws'
/// url: 'ws://localhost:5150/ws'
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigWS {
pub connect: bool,
pub listen: bool,
pub max_connections: u32,
pub listen_address: String,
pub path: String,
pub url: Option<String>,
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}
/// Enable and configure Secure Web Sockets
///
/// ```yaml
/// wss:
/// connect: true
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/// listen: false
/// max_connections: 16
/// listen_address: ':5150'
/// path: 'ws'
/// url: ''
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigWSS {
pub connect: bool,
pub listen: bool,
pub max_connections: u32,
pub listen_address: String,
pub path: String,
pub url: Option<String>, // Fixed URL is not optional for TLS-based protocols and is dynamically validated
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}
/// Configure Network Protocols
///
/// Veilid can communicate over UDP, TCP, and Web Sockets.
///
/// All protocols are available by default, and the Veilid node will
/// sort out which protocol is used for each peer connection.
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigProtocol {
pub udp: VeilidConfigUDP,
pub tcp: VeilidConfigTCP,
pub ws: VeilidConfigWS,
pub wss: VeilidConfigWSS,
}
/// Configure TLS
///
/// ```yaml
/// tls:
/// certificate_path: /path/to/cert
/// private_key_path: /path/to/private/key
/// connection_initial_timeout_ms: 2000
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigTLS {
pub certificate_path: String,
pub private_key_path: String,
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pub connection_initial_timeout_ms: u32,
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}
/// Configure the Distributed Hash Table (DHT)
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigDHT {
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pub resolve_node_timeout_ms: Option<u32>,
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pub resolve_node_count: u32,
pub resolve_node_fanout: u32,
pub max_find_node_count: u32,
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pub get_value_timeout_ms: Option<u32>,
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pub get_value_count: u32,
pub get_value_fanout: u32,
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pub set_value_timeout_ms: Option<u32>,
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pub set_value_count: u32,
pub set_value_fanout: u32,
pub min_peer_count: u32,
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pub min_peer_refresh_time_ms: u32,
pub validate_dial_info_receipt_time_ms: u32,
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}
/// Configure RPC
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigRPC {
pub concurrency: u32,
pub queue_size: u32,
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pub max_timestamp_behind_ms: Option<u32>,
pub max_timestamp_ahead_ms: Option<u32>,
pub timeout_ms: u32,
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pub max_route_hop_count: u8,
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pub default_route_hop_count: u8,
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}
/// Configure the network routing table
///
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigRoutingTable {
pub limit_over_attached: u32,
pub limit_fully_attached: u32,
pub limit_attached_strong: u32,
pub limit_attached_good: u32,
pub limit_attached_weak: u32,
}
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigNetwork {
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pub connection_initial_timeout_ms: u32,
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pub connection_inactivity_timeout_ms: u32,
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pub max_connections_per_ip4: u32,
pub max_connections_per_ip6_prefix: u32,
pub max_connections_per_ip6_prefix_size: u32,
pub max_connection_frequency_per_min: u32,
pub client_whitelist_timeout_ms: u32,
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pub reverse_connection_receipt_time_ms: u32,
pub hole_punch_receipt_time_ms: u32,
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pub node_id: Option<DHTKey>,
pub node_id_secret: Option<DHTKeySecret>,
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pub bootstrap: Vec<String>,
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pub bootstrap_nodes: Vec<String>,
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pub routing_table: VeilidConfigRoutingTable,
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pub rpc: VeilidConfigRPC,
pub dht: VeilidConfigDHT,
pub upnp: bool,
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pub detect_address_changes: bool,
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pub restricted_nat_retries: u32,
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pub tls: VeilidConfigTLS,
pub application: VeilidConfigApplication,
pub protocol: VeilidConfigProtocol,
}
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigTableStore {
pub directory: String,
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pub delete: bool,
}
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigBlockStore {
pub directory: String,
pub delete: bool,
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}
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigProtectedStore {
pub allow_insecure_fallback: bool,
pub always_use_insecure_storage: bool,
pub insecure_fallback_directory: String,
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pub delete: bool,
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}
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigCapabilities {
pub protocol_udp: bool,
pub protocol_connect_tcp: bool,
pub protocol_accept_tcp: bool,
pub protocol_connect_ws: bool,
pub protocol_accept_ws: bool,
pub protocol_connect_wss: bool,
pub protocol_accept_wss: bool,
}
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#[derive(
Clone,
Copy,
PartialEq,
Eq,
Debug,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub enum VeilidConfigLogLevel {
Off,
Error,
Warn,
Info,
Debug,
Trace,
}
impl VeilidConfigLogLevel {
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pub fn to_veilid_log_level(&self) -> Option<VeilidLogLevel> {
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match self {
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Self::Off => None,
Self::Error => Some(VeilidLogLevel::Error),
Self::Warn => Some(VeilidLogLevel::Warn),
Self::Info => Some(VeilidLogLevel::Info),
Self::Debug => Some(VeilidLogLevel::Debug),
Self::Trace => Some(VeilidLogLevel::Trace),
}
}
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pub fn to_tracing_level_filter(&self) -> level_filters::LevelFilter {
match self {
Self::Off => level_filters::LevelFilter::OFF,
Self::Error => level_filters::LevelFilter::ERROR,
Self::Warn => level_filters::LevelFilter::WARN,
Self::Info => level_filters::LevelFilter::INFO,
Self::Debug => level_filters::LevelFilter::DEBUG,
Self::Trace => level_filters::LevelFilter::TRACE,
}
}
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pub fn from_veilid_log_level(level: Option<VeilidLogLevel>) -> Self {
match level {
None => Self::Off,
Some(VeilidLogLevel::Error) => Self::Error,
Some(VeilidLogLevel::Warn) => Self::Warn,
Some(VeilidLogLevel::Info) => Self::Info,
Some(VeilidLogLevel::Debug) => Self::Debug,
Some(VeilidLogLevel::Trace) => Self::Trace,
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}
}
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pub fn from_tracing_level_filter(level: level_filters::LevelFilter) -> Self {
match level {
level_filters::LevelFilter::OFF => Self::Off,
level_filters::LevelFilter::ERROR => Self::Error,
level_filters::LevelFilter::WARN => Self::Warn,
level_filters::LevelFilter::INFO => Self::Info,
level_filters::LevelFilter::DEBUG => Self::Debug,
level_filters::LevelFilter::TRACE => Self::Trace,
}
}
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}
impl Default for VeilidConfigLogLevel {
fn default() -> Self {
Self::Off
}
}
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#[derive(
Default,
Debug,
Clone,
PartialEq,
Eq,
Serialize,
Deserialize,
RkyvArchive,
RkyvSerialize,
RkyvDeserialize,
)]
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pub struct VeilidConfigInner {
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pub program_name: String,
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pub namespace: String,
pub capabilities: VeilidConfigCapabilities,
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pub protected_store: VeilidConfigProtectedStore,
pub table_store: VeilidConfigTableStore,
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pub block_store: VeilidConfigBlockStore,
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pub network: VeilidConfigNetwork,
}
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/// The Veilid Configuration
///
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/// Veilid is configured
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#[derive(Clone)]
pub struct VeilidConfig {
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update_cb: Option<UpdateCallback>,
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inner: Arc<RwLock<VeilidConfigInner>>,
}
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impl fmt::Debug for VeilidConfig {
fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
let inner = self.inner.read();
f.debug_struct("VeilidConfig")
.field("inner", &*inner)
.finish()
}
}
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impl Default for VeilidConfig {
fn default() -> Self {
Self::new()
}
}
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impl VeilidConfig {
fn new_inner() -> VeilidConfigInner {
VeilidConfigInner::default()
}
pub fn new() -> Self {
Self {
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update_cb: None,
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inner: Arc::new(RwLock::new(Self::new_inner())),
}
}
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pub fn setup_from_json(
&mut self,
config: String,
update_cb: UpdateCallback,
) -> Result<(), VeilidAPIError> {
self.update_cb = Some(update_cb);
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self.with_mut(|inner| {
*inner = serde_json::from_str(&config).map_err(VeilidAPIError::generic)?;
Ok(())
})
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}
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pub fn setup(
&mut self,
cb: ConfigCallback,
update_cb: UpdateCallback,
) -> Result<(), VeilidAPIError> {
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macro_rules! get_config {
($key:expr) => {
let keyname = &stringify!($key)[6..];
$key = *cb(keyname.to_owned())?.downcast().map_err(|_| {
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let err = format!("incorrect type for key {}", keyname);
debug!("{}", err);
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VeilidAPIError::generic(err)
})?;
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};
}
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self.update_cb = Some(update_cb);
self.with_mut(|inner| {
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get_config!(inner.program_name);
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get_config!(inner.namespace);
get_config!(inner.capabilities.protocol_udp);
get_config!(inner.capabilities.protocol_connect_tcp);
get_config!(inner.capabilities.protocol_accept_tcp);
get_config!(inner.capabilities.protocol_connect_ws);
get_config!(inner.capabilities.protocol_accept_ws);
get_config!(inner.capabilities.protocol_connect_wss);
get_config!(inner.capabilities.protocol_accept_wss);
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get_config!(inner.table_store.directory);
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get_config!(inner.table_store.delete);
get_config!(inner.block_store.directory);
get_config!(inner.block_store.delete);
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get_config!(inner.protected_store.allow_insecure_fallback);
get_config!(inner.protected_store.always_use_insecure_storage);
get_config!(inner.protected_store.insecure_fallback_directory);
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get_config!(inner.protected_store.delete);
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get_config!(inner.network.node_id);
get_config!(inner.network.node_id_secret);
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get_config!(inner.network.connection_initial_timeout_ms);
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get_config!(inner.network.connection_inactivity_timeout_ms);
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get_config!(inner.network.max_connections_per_ip4);
get_config!(inner.network.max_connections_per_ip6_prefix);
get_config!(inner.network.max_connections_per_ip6_prefix_size);
get_config!(inner.network.max_connection_frequency_per_min);
get_config!(inner.network.client_whitelist_timeout_ms);
get_config!(inner.network.reverse_connection_receipt_time_ms);
get_config!(inner.network.hole_punch_receipt_time_ms);
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get_config!(inner.network.bootstrap);
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get_config!(inner.network.bootstrap_nodes);
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get_config!(inner.network.routing_table.limit_over_attached);
get_config!(inner.network.routing_table.limit_fully_attached);
get_config!(inner.network.routing_table.limit_attached_strong);
get_config!(inner.network.routing_table.limit_attached_good);
get_config!(inner.network.routing_table.limit_attached_weak);
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get_config!(inner.network.dht.resolve_node_timeout_ms);
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get_config!(inner.network.dht.resolve_node_count);
get_config!(inner.network.dht.resolve_node_fanout);
get_config!(inner.network.dht.max_find_node_count);
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get_config!(inner.network.dht.get_value_timeout_ms);
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get_config!(inner.network.dht.get_value_count);
get_config!(inner.network.dht.get_value_fanout);
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get_config!(inner.network.dht.set_value_timeout_ms);
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get_config!(inner.network.dht.set_value_count);
get_config!(inner.network.dht.set_value_fanout);
get_config!(inner.network.dht.min_peer_count);
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get_config!(inner.network.dht.min_peer_refresh_time_ms);
get_config!(inner.network.dht.validate_dial_info_receipt_time_ms);
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get_config!(inner.network.rpc.concurrency);
get_config!(inner.network.rpc.queue_size);
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get_config!(inner.network.rpc.max_timestamp_behind_ms);
get_config!(inner.network.rpc.max_timestamp_ahead_ms);
get_config!(inner.network.rpc.timeout_ms);
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get_config!(inner.network.rpc.max_route_hop_count);
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get_config!(inner.network.rpc.default_route_hop_count);
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get_config!(inner.network.upnp);
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get_config!(inner.network.detect_address_changes);
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get_config!(inner.network.restricted_nat_retries);
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get_config!(inner.network.tls.certificate_path);
get_config!(inner.network.tls.private_key_path);
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get_config!(inner.network.tls.connection_initial_timeout_ms);
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get_config!(inner.network.application.https.enabled);
get_config!(inner.network.application.https.listen_address);
get_config!(inner.network.application.https.path);
get_config!(inner.network.application.https.url);
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get_config!(inner.network.application.http.enabled);
get_config!(inner.network.application.http.listen_address);
get_config!(inner.network.application.http.path);
get_config!(inner.network.application.http.url);
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get_config!(inner.network.protocol.udp.enabled);
get_config!(inner.network.protocol.udp.socket_pool_size);
get_config!(inner.network.protocol.udp.listen_address);
get_config!(inner.network.protocol.udp.public_address);
get_config!(inner.network.protocol.tcp.connect);
get_config!(inner.network.protocol.tcp.listen);
get_config!(inner.network.protocol.tcp.max_connections);
get_config!(inner.network.protocol.tcp.listen_address);
get_config!(inner.network.protocol.tcp.public_address);
get_config!(inner.network.protocol.ws.connect);
get_config!(inner.network.protocol.ws.listen);
get_config!(inner.network.protocol.ws.max_connections);
get_config!(inner.network.protocol.ws.listen_address);
get_config!(inner.network.protocol.ws.path);
get_config!(inner.network.protocol.ws.url);
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get_config!(inner.network.protocol.wss.connect);
get_config!(inner.network.protocol.wss.listen);
get_config!(inner.network.protocol.wss.max_connections);
get_config!(inner.network.protocol.wss.listen_address);
get_config!(inner.network.protocol.wss.path);
get_config!(inner.network.protocol.wss.url);
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Ok(())
})
}
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pub fn get_veilid_state(&self) -> VeilidStateConfig {
let inner = self.inner.read();
VeilidStateConfig {
config: inner.clone(),
}
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}
pub fn get(&self) -> RwLockReadGuard<VeilidConfigInner> {
self.inner.read()
}
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pub fn with_mut<F, R>(&self, f: F) -> Result<R, VeilidAPIError>
where
F: FnOnce(&mut VeilidConfigInner) -> Result<R, VeilidAPIError>,
{
let (out, config) = {
let inner = &mut *self.inner.write();
// Edit a copy
let mut editedinner = inner.clone();
// Make changes
let out = f(&mut editedinner)?;
// Validate
Self::validate(&mut editedinner)?;
// Commit changes
*inner = editedinner.clone();
(out, editedinner)
};
// Send configuration update to clients
if let Some(update_cb) = &self.update_cb {
update_cb(VeilidUpdate::Config(VeilidStateConfig { config }));
}
Ok(out)
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}
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pub fn get_key_json(&self, key: &str) -> Result<String, VeilidAPIError> {
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let c = self.get();
// Generate json from whole config
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let jc = serde_json::to_string(&*c).map_err(VeilidAPIError::generic)?;
let jvc = json::parse(&jc).map_err(VeilidAPIError::generic)?;
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// Find requested subkey
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if key.is_empty() {
Ok(jvc.to_string())
} else {
// Split key into path parts
let keypath: Vec<&str> = key.split('.').collect();
let mut out = &jvc;
for k in keypath {
if !out.has_key(k) {
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apibail_parse_error!(format!("invalid subkey in key '{}'", key), k);
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}
out = &out[k];
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}
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Ok(out.to_string())
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}
}
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pub fn set_key_json(&self, key: &str, value: &str) -> Result<(), VeilidAPIError> {
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self.with_mut(|c| {
// Split key into path parts
let keypath: Vec<&str> = key.split('.').collect();
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// Convert value into jsonvalue
let newval = json::parse(value).map_err(VeilidAPIError::generic)?;
// Generate json from whole config
let jc = serde_json::to_string(&*c).map_err(VeilidAPIError::generic)?;
let mut jvc = json::parse(&jc).map_err(VeilidAPIError::generic)?;
// Find requested subkey
let newconfigstring = if let Some((objkeyname, objkeypath)) = keypath.split_last() {
// Replace subkey
let mut out = &mut jvc;
for k in objkeypath {
if !out.has_key(*k) {
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apibail_parse_error!(format!("invalid subkey in key '{}'", key), k);
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}
out = &mut out[*k];
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}
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if !out.has_key(objkeyname) {
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apibail_parse_error!(format!("invalid subkey in key '{}'", key), objkeyname);
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}
out[*objkeyname] = newval;
jvc.to_string()
} else {
newval.to_string()
};
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// Generate new config
*c = serde_json::from_str(&newconfigstring).map_err(VeilidAPIError::generic)?;
Ok(())
})
}
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fn validate(inner: &VeilidConfigInner) -> Result<(), VeilidAPIError> {
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if inner.program_name.is_empty() {
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apibail_generic!("Program name must not be empty in 'program_name'");
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}
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// if inner.network.protocol.udp.enabled {
// // Validate UDP settings
// }
if inner.network.protocol.tcp.listen {
// Validate TCP settings
if inner.network.protocol.tcp.max_connections == 0 {
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apibail_generic!("TCP max connections must be > 0 in config key 'network.protocol.tcp.max_connections'");
}
}
if inner.network.protocol.ws.listen {
// Validate WS settings
if inner.network.protocol.ws.max_connections == 0 {
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apibail_generic!("WS max connections must be > 0 in config key 'network.protocol.ws.max_connections'");
}
if inner.network.application.https.enabled
&& inner.network.application.https.path == inner.network.protocol.ws.path
{
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apibail_generic!("WS path conflicts with HTTPS application path in config key 'network.protocol.ws.path'");
}
if inner.network.application.http.enabled
&& inner.network.application.http.path == inner.network.protocol.ws.path
{
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apibail_generic!("WS path conflicts with HTTP application path in config key 'network.protocol.ws.path'");
}
}
if inner.network.protocol.wss.listen {
// Validate WSS settings
if inner.network.protocol.wss.max_connections == 0 {
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apibail_generic!("WSS max connections must be > 0 in config key 'network.protocol.wss.max_connections'");
}
if inner
.network
.protocol
.wss
.url
.as_ref()
.map(|u| u.is_empty())
.unwrap_or_default()
{
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apibail_generic!(
"WSS URL must be specified in config key 'network.protocol.wss.url'"
);
}
if inner.network.application.https.enabled
&& inner.network.application.https.path == inner.network.protocol.wss.path
{
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apibail_generic!("WSS path conflicts with HTTPS application path in config key 'network.protocol.ws.path'");
}
if inner.network.application.http.enabled
&& inner.network.application.http.path == inner.network.protocol.wss.path
{
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apibail_generic!("WSS path conflicts with HTTP application path in config key 'network.protocol.ws.path'");
}
}
if inner.network.application.https.enabled {
// Validate HTTPS settings
if inner
.network
.application
.https
.url
.as_ref()
.map(|u| u.is_empty())
.unwrap_or_default()
{
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apibail_generic!(
"HTTPS URL must be specified in config key 'network.application.https.url'"
);
}
}
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if inner.network.rpc.max_route_hop_count == 0 {
apibail_generic!(
"max route hop count must be >= 1 in 'network.rpc.max_route_hop_count'"
);
}
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if inner.network.rpc.max_route_hop_count > 5 {
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apibail_generic!(
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"max route hop count must be <= 5 in 'network.rpc.max_route_hop_count'"
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);
}
if inner.network.rpc.default_route_hop_count == 0 {
apibail_generic!(
"default route hop count must be >= 1 in 'network.rpc.default_route_hop_count'"
);
}
if inner.network.rpc.default_route_hop_count > inner.network.rpc.max_route_hop_count {
apibail_generic!(
"default route hop count must be <= max route hop count in 'network.rpc.default_route_hop_count <= network.rpc.max_route_hop_count'"
);
}
if inner.network.rpc.queue_size < 256 {
apibail_generic!("rpc queue size must be >= 256 in 'network.rpc.queue_size'");
}
if inner.network.rpc.timeout_ms < 1000 {
apibail_generic!("rpc timeout must be >= 1000 in 'network.rpc.timeout_ms'");
}
Ok(())
}
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// Get the node id from config if one is specified
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// Must be done -after- protected store startup
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pub async fn init_node_id(
&self,
protected_store: intf::ProtectedStore,
) -> Result<(), VeilidAPIError> {
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let mut node_id = self.inner.read().network.node_id;
let mut node_id_secret = self.inner.read().network.node_id_secret;
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// See if node id was previously stored in the protected store
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if node_id.is_none() {
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debug!("pulling node id from storage");
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if let Some(s) = protected_store
.load_user_secret_string("node_id")
.await
.map_err(VeilidAPIError::internal)?
{
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debug!("node id found in storage");
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node_id = Some(DHTKey::try_decode(s.as_str()).map_err(VeilidAPIError::internal)?);
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} else {
debug!("node id not found in storage");
}
}
// See if node id secret was previously stored in the protected store
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if node_id_secret.is_none() {
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debug!("pulling node id secret from storage");
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if let Some(s) = protected_store
.load_user_secret_string("node_id_secret")
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.await
.map_err(VeilidAPIError::internal)?
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{
debug!("node id secret found in storage");
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node_id_secret =
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Some(DHTKeySecret::try_decode(s.as_str()).map_err(VeilidAPIError::internal)?);
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} else {
debug!("node id secret not found in storage");
}
}
// If we have a node id from storage, check it
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let (node_id, node_id_secret) =
if let (Some(node_id), Some(node_id_secret)) = (node_id, node_id_secret) {
// Validate node id
if !crypto::validate_key(&node_id, &node_id_secret) {
apibail_generic!("node id secret and node id key don't match");
}
(node_id, node_id_secret)
} else {
// If we still don't have a valid node id, generate one
debug!("generating new node id");
generate_secret()
};
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info!("Node Id is {}", node_id.encode());
// info!("Node Id Secret is {}", node_id_secret.encode());
// Save the node id / secret in storage
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protected_store
.save_user_secret_string("node_id", node_id.encode().as_str())
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.await
.map_err(VeilidAPIError::internal)?;
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protected_store
.save_user_secret_string("node_id_secret", node_id_secret.encode().as_str())
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.await
.map_err(VeilidAPIError::internal)?;
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self.with_mut(|c| {
c.network.node_id = Some(node_id);
c.network.node_id_secret = Some(node_id_secret);
Ok(())
})?;
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trace!("init_node_id complete");
Ok(())
}
}