550 lines
13 KiB
Rust
550 lines
13 KiB
Rust
#![recursion_limit = "1024"]
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#[macro_use]
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extern crate log;
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mod admin_rpc;
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mod repair;
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mod server;
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use std::collections::HashSet;
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use std::net::SocketAddr;
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use std::path::PathBuf;
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use std::sync::Arc;
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use std::time::Duration;
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use serde::{Deserialize, Serialize};
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use structopt::StructOpt;
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use garage_util::config::TlsConfig;
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use garage_util::data::*;
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use garage_util::error::Error;
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use garage_rpc::membership::*;
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use garage_rpc::ring::*;
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use garage_rpc::rpc_client::*;
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use admin_rpc::*;
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#[derive(StructOpt, Debug)]
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#[structopt(name = "garage")]
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pub struct Opt {
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/// RPC connect to this host to execute client operations
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#[structopt(short = "h", long = "rpc-host", default_value = "127.0.0.1:3901")]
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rpc_host: SocketAddr,
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#[structopt(long = "ca-cert")]
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ca_cert: Option<String>,
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#[structopt(long = "client-cert")]
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client_cert: Option<String>,
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#[structopt(long = "client-key")]
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client_key: Option<String>,
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#[structopt(subcommand)]
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cmd: Command,
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}
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#[derive(StructOpt, Debug)]
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pub enum Command {
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/// Run Garage server
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#[structopt(name = "server")]
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Server(ServerOpt),
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/// Get network status
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#[structopt(name = "status")]
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Status,
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/// Garage node operations
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#[structopt(name = "node")]
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Node(NodeOperation),
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/// Bucket operations
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#[structopt(name = "bucket")]
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Bucket(BucketOperation),
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/// Key operations
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#[structopt(name = "key")]
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Key(KeyOperation),
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/// Start repair of node data
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#[structopt(name = "repair")]
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Repair(RepairOpt),
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}
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#[derive(StructOpt, Debug)]
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pub struct ServerOpt {
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/// Configuration file
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#[structopt(short = "c", long = "config", default_value = "./config.toml")]
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config_file: PathBuf,
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}
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#[derive(StructOpt, Debug)]
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pub enum NodeOperation {
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/// Configure Garage node
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#[structopt(name = "configure")]
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Configure(ConfigureNodeOpt),
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/// Remove Garage node from cluster
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#[structopt(name = "remove")]
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Remove(RemoveNodeOpt),
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}
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#[derive(StructOpt, Debug)]
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pub struct ConfigureNodeOpt {
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/// Node to configure (prefix of hexadecimal node id)
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node_id: String,
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/// Location (datacenter) of the node
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#[structopt(short = "d", long = "datacenter")]
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datacenter: Option<String>,
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/// Capacity (in relative terms, use 1 to represent your smallest server)
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#[structopt(short = "c", long = "capacity")]
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capacity: Option<u32>,
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/// Optionnal node tag
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#[structopt(short = "t", long = "tag")]
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tag: Option<String>,
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}
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#[derive(StructOpt, Debug)]
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pub struct RemoveNodeOpt {
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/// Node to configure (prefix of hexadecimal node id)
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node_id: String,
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/// If this flag is not given, the node won't be removed
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#[structopt(long = "yes")]
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yes: bool,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug)]
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pub enum BucketOperation {
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/// List buckets
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#[structopt(name = "list")]
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List,
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/// Get bucket info
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#[structopt(name = "info")]
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Info(BucketOpt),
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/// Create bucket
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#[structopt(name = "create")]
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Create(BucketOpt),
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/// Delete bucket
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#[structopt(name = "delete")]
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Delete(DeleteBucketOpt),
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/// Allow key to read or write to bucket
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#[structopt(name = "allow")]
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Allow(PermBucketOpt),
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/// Allow key to read or write to bucket
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#[structopt(name = "deny")]
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Deny(PermBucketOpt),
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/// Expose as website or not
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#[structopt(name = "website")]
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Website(WebsiteOpt),
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug)]
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pub struct WebsiteOpt {
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/// Create
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#[structopt(long = "allow")]
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pub allow: bool,
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/// Delete
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#[structopt(long = "deny")]
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pub deny: bool,
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/// Bucket name
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pub bucket: String,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug)]
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pub struct BucketOpt {
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/// Bucket name
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pub name: String,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug)]
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pub struct DeleteBucketOpt {
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/// Bucket name
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pub name: String,
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/// If this flag is not given, the bucket won't be deleted
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#[structopt(long = "yes")]
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pub yes: bool,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug)]
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pub struct PermBucketOpt {
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/// Access key ID
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#[structopt(long = "key")]
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pub key_id: String,
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/// Allow/deny read operations
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#[structopt(long = "read")]
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pub read: bool,
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/// Allow/deny write operations
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#[structopt(long = "write")]
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pub write: bool,
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/// Bucket name
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pub bucket: String,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug)]
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pub enum KeyOperation {
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/// List keys
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#[structopt(name = "list")]
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List,
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/// Get key info
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#[structopt(name = "info")]
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Info(KeyOpt),
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/// Create new key
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#[structopt(name = "new")]
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New(KeyNewOpt),
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/// Rename key
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#[structopt(name = "rename")]
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Rename(KeyRenameOpt),
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/// Delete key
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#[structopt(name = "delete")]
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Delete(KeyDeleteOpt),
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug)]
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pub struct KeyOpt {
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/// ID of the key
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key_id: String,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug)]
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pub struct KeyNewOpt {
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/// Name of the key
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#[structopt(long = "name", default_value = "Unnamed key")]
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name: String,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug)]
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pub struct KeyRenameOpt {
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/// ID of the key
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key_id: String,
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/// New name of the key
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new_name: String,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug)]
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pub struct KeyDeleteOpt {
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/// ID of the key
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key_id: String,
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/// Confirm deletion
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#[structopt(long = "yes")]
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yes: bool,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug, Clone)]
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pub struct RepairOpt {
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/// Launch repair operation on all nodes
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#[structopt(short = "a", long = "all-nodes")]
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pub all_nodes: bool,
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/// Confirm the launch of the repair operation
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#[structopt(long = "yes")]
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pub yes: bool,
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#[structopt(subcommand)]
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pub what: Option<RepairWhat>,
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}
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#[derive(Serialize, Deserialize, StructOpt, Debug, Eq, PartialEq, Clone)]
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pub enum RepairWhat {
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/// Only do a full sync of metadata tables
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#[structopt(name = "tables")]
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Tables,
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/// Only repair (resync/rebalance) the set of stored blocks
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#[structopt(name = "blocks")]
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Blocks,
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/// Only redo the propagation of object deletions to the version table (slow)
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#[structopt(name = "versions")]
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Versions,
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/// Only redo the propagation of version deletions to the block ref table (extremely slow)
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#[structopt(name = "block_refs")]
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BlockRefs,
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}
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#[tokio::main]
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async fn main() {
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pretty_env_logger::init();
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let opt = Opt::from_args();
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let tls_config = match (opt.ca_cert, opt.client_cert, opt.client_key) {
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(Some(ca_cert), Some(client_cert), Some(client_key)) => Some(TlsConfig {
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ca_cert,
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node_cert: client_cert,
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node_key: client_key,
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}),
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(None, None, None) => None,
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_ => {
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warn!("Missing one of: --ca-cert, --node-cert, --node-key. Not using TLS.");
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None
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}
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};
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let rpc_http_cli =
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Arc::new(RpcHttpClient::new(8, &tls_config).expect("Could not create RPC client"));
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let membership_rpc_cli =
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RpcAddrClient::new(rpc_http_cli.clone(), MEMBERSHIP_RPC_PATH.to_string());
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let admin_rpc_cli = RpcAddrClient::new(rpc_http_cli.clone(), ADMIN_RPC_PATH.to_string());
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let resp = match opt.cmd {
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Command::Server(server_opt) => {
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// Abort on panic (same behavior as in Go)
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std::panic::set_hook(Box::new(|panic_info| {
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error!("{}", panic_info.to_string());
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std::process::abort();
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}));
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server::run_server(server_opt.config_file).await
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}
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Command::Status => cmd_status(membership_rpc_cli, opt.rpc_host).await,
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Command::Node(NodeOperation::Configure(configure_opt)) => {
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cmd_configure(membership_rpc_cli, opt.rpc_host, configure_opt).await
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}
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Command::Node(NodeOperation::Remove(remove_opt)) => {
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cmd_remove(membership_rpc_cli, opt.rpc_host, remove_opt).await
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}
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Command::Bucket(bo) => {
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cmd_admin(admin_rpc_cli, opt.rpc_host, AdminRPC::BucketOperation(bo)).await
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}
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Command::Key(bo) => {
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cmd_admin(admin_rpc_cli, opt.rpc_host, AdminRPC::KeyOperation(bo)).await
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}
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Command::Repair(ro) => {
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cmd_admin(admin_rpc_cli, opt.rpc_host, AdminRPC::LaunchRepair(ro)).await
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}
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};
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if let Err(e) = resp {
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error!("Error: {}", e);
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}
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}
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async fn cmd_status(rpc_cli: RpcAddrClient<Message>, rpc_host: SocketAddr) -> Result<(), Error> {
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let status = match rpc_cli
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.call(&rpc_host, &Message::PullStatus, ADMIN_RPC_TIMEOUT)
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.await??
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{
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Message::AdvertiseNodesUp(nodes) => nodes,
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resp => return Err(Error::Message(format!("Invalid RPC response: {:?}", resp))),
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};
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let config = match rpc_cli
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.call(&rpc_host, &Message::PullConfig, ADMIN_RPC_TIMEOUT)
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.await??
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{
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Message::AdvertiseConfig(cfg) => cfg,
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resp => return Err(Error::Message(format!("Invalid RPC response: {:?}", resp))),
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};
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println!("Healthy nodes:");
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for adv in status.iter().filter(|x| x.is_up) {
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if let Some(cfg) = config.members.get(&adv.id) {
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println!(
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"{:?}\t{}\t{}\t[{}]\t{}\t{}",
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adv.id, adv.state_info.hostname, adv.addr, cfg.tag, cfg.datacenter, cfg.capacity
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);
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} else {
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println!(
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"{:?}\t{}\t{}\tUNCONFIGURED/REMOVED",
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adv.id, adv.state_info.hostname, adv.addr
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);
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}
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}
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let status_keys = status.iter().map(|x| x.id).collect::<HashSet<_>>();
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let failure_case_1 = status.iter().any(|x| !x.is_up);
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let failure_case_2 = config
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.members
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.iter()
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.any(|(id, _)| !status_keys.contains(id));
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if failure_case_1 || failure_case_2 {
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println!("\nFailed nodes:");
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for adv in status.iter().filter(|x| !x.is_up) {
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if let Some(cfg) = config.members.get(&adv.id) {
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println!(
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"{:?}\t{}\t{}\t[{}]\t{}\t{}\tlast seen: {}s ago",
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adv.id,
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adv.state_info.hostname,
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adv.addr,
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cfg.tag,
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cfg.datacenter,
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cfg.capacity,
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(now_msec() - adv.last_seen) / 1000,
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);
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}
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}
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for (id, cfg) in config.members.iter() {
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if !status.iter().any(|x| x.id == *id) {
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println!(
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"{:?}\t{}\t{}\t{}\tnever seen",
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id, cfg.tag, cfg.datacenter, cfg.capacity
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);
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}
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}
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}
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Ok(())
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}
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async fn cmd_configure(
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rpc_cli: RpcAddrClient<Message>,
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rpc_host: SocketAddr,
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args: ConfigureNodeOpt,
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) -> Result<(), Error> {
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let status = match rpc_cli
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.call(&rpc_host, &Message::PullStatus, ADMIN_RPC_TIMEOUT)
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.await??
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{
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Message::AdvertiseNodesUp(nodes) => nodes,
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resp => return Err(Error::Message(format!("Invalid RPC response: {:?}", resp))),
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};
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let mut candidates = vec![];
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for adv in status.iter() {
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if hex::encode(&adv.id).starts_with(&args.node_id) {
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candidates.push(adv.id);
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}
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}
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if candidates.len() != 1 {
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return Err(Error::Message(format!(
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"{} matching nodes",
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candidates.len()
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)));
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}
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let mut config = match rpc_cli
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.call(&rpc_host, &Message::PullConfig, ADMIN_RPC_TIMEOUT)
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.await??
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{
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Message::AdvertiseConfig(cfg) => cfg,
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resp => return Err(Error::Message(format!("Invalid RPC response: {:?}", resp))),
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};
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let new_entry = match config.members.get(&candidates[0]) {
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None => NetworkConfigEntry {
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datacenter: args
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.datacenter
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.expect("Please specifiy a datacenter with the -d flag"),
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capacity: args
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.capacity
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.expect("Please specifiy a capacity with the -c flag"),
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tag: args.tag.unwrap_or("".to_string()),
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},
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Some(old) => NetworkConfigEntry {
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datacenter: args.datacenter.unwrap_or(old.datacenter.to_string()),
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capacity: args.capacity.unwrap_or(old.capacity),
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tag: args.tag.unwrap_or(old.tag.to_string()),
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},
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};
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config.members.insert(candidates[0].clone(), new_entry);
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config.version += 1;
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rpc_cli
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.call(
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&rpc_host,
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&Message::AdvertiseConfig(config),
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ADMIN_RPC_TIMEOUT,
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)
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.await??;
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Ok(())
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}
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async fn cmd_remove(
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rpc_cli: RpcAddrClient<Message>,
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rpc_host: SocketAddr,
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args: RemoveNodeOpt,
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) -> Result<(), Error> {
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let mut config = match rpc_cli
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.call(&rpc_host, &Message::PullConfig, ADMIN_RPC_TIMEOUT)
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.await??
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{
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Message::AdvertiseConfig(cfg) => cfg,
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resp => return Err(Error::Message(format!("Invalid RPC response: {:?}", resp))),
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};
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let mut candidates = vec![];
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for (key, _) in config.members.iter() {
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if hex::encode(key).starts_with(&args.node_id) {
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candidates.push(*key);
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}
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}
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if candidates.len() != 1 {
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return Err(Error::Message(format!(
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"{} matching nodes",
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candidates.len()
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)));
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}
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if !args.yes {
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return Err(Error::Message(format!(
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"Add the flag --yes to really remove {:?} from the cluster",
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candidates[0]
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)));
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}
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config.members.remove(&candidates[0]);
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config.version += 1;
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rpc_cli
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.call(
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&rpc_host,
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&Message::AdvertiseConfig(config),
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ADMIN_RPC_TIMEOUT,
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)
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.await??;
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Ok(())
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}
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async fn cmd_admin(
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rpc_cli: RpcAddrClient<AdminRPC>,
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rpc_host: SocketAddr,
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args: AdminRPC,
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) -> Result<(), Error> {
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match rpc_cli.call(&rpc_host, args, ADMIN_RPC_TIMEOUT).await?? {
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AdminRPC::Ok(msg) => {
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println!("{}", msg);
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}
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AdminRPC::BucketList(bl) => {
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println!("List of buckets:");
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for bucket in bl {
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println!("{}", bucket);
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}
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}
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AdminRPC::BucketInfo(bucket) => {
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println!("{:?}", bucket);
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}
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AdminRPC::KeyList(kl) => {
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println!("List of keys:");
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for key in kl {
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println!("{}\t{}", key.0, key.1);
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}
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}
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AdminRPC::KeyInfo(key) => {
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println!("{:?}", key);
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}
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r => {
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error!("Unexpected response: {:?}", r);
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}
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}
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Ok(())
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}
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