mirror of
https://github.com/telemt/telemt.git
synced 2026-07-11 14:30:18 +03:00
CidrRateLimitKey with IpNetwork parsing and serialization added
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+153
-4
@@ -2,6 +2,7 @@ use chrono::{DateTime, Utc};
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use ipnetwork::IpNetwork;
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use serde::{Deserialize, Serialize};
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use std::collections::HashMap;
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use std::fmt;
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use std::net::IpAddr;
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use std::path::PathBuf;
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@@ -2098,11 +2099,13 @@ pub struct AccessConfig {
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/// Per-CIDR aggregate transport rate limits in bits-per-second.
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///
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/// Matching uses longest-prefix-wins semantics. A value of `0` in one
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/// direction means "unlimited" for that direction. Limits are amortized
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/// with the same bounded-burst contract as per-user rate limits.
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/// Explicit CIDR keys use longest-prefix-wins semantics. Auto-template
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/// keys (`*4/N`, `*6/N`, `*/N`) lazily create per-source-subnet buckets
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/// after explicit CIDR matching misses. A value of `0` in one direction
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/// means "unlimited" for that direction. Limits are amortized with the
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/// same bounded-burst contract as per-user rate limits.
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#[serde(default)]
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pub cidr_rate_limits: HashMap<IpNetwork, RateLimitBps>,
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pub cidr_rate_limits: HashMap<CidrRateLimitKey, RateLimitBps>,
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/// Per-username client source IP/CIDR deny list. Checked after successful
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/// authentication; matching IPs get the same rejection path as invalid auth
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@@ -2171,10 +2174,156 @@ impl AccessConfig {
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}
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}
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/// Key used by `access.cidr_rate_limits`.
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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pub enum CidrRateLimitKey {
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/// Explicit source CIDR rule.
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Network(IpNetwork),
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/// IPv4 auto-template that creates one bucket for each matching `/N`.
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AutoV4(u8),
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/// IPv6 auto-template that creates one bucket for each matching `/N`.
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AutoV6(u8),
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/// Dual-stack auto-template; IPv4 uses `/N`, IPv6 uses `/(N * 4)`.
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AutoDual(u8),
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}
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#[derive(Debug, Clone, Copy, PartialEq, Eq, Hash)]
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pub(crate) enum CidrAutoTemplateFamily {
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V4,
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V6,
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}
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impl CidrAutoTemplateFamily {
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pub(crate) fn marker(self) -> &'static str {
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match self {
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Self::V4 => "*4",
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Self::V6 => "*6",
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}
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}
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}
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#[derive(Debug, Clone, Copy, PartialEq, Eq, Hash)]
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pub(crate) struct CidrAutoTemplate {
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pub(crate) family: CidrAutoTemplateFamily,
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pub(crate) prefix_len: u8,
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}
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impl fmt::Display for CidrAutoTemplate {
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fn fmt(&self, formatter: &mut fmt::Formatter<'_>) -> fmt::Result {
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write!(formatter, "{}/{}", self.family.marker(), self.prefix_len)
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}
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}
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impl CidrRateLimitKey {
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pub(crate) fn auto_templates(&self) -> [Option<CidrAutoTemplate>; 2] {
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match *self {
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Self::Network(_) => [None, None],
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Self::AutoV4(prefix_len) => [
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Some(CidrAutoTemplate {
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family: CidrAutoTemplateFamily::V4,
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prefix_len,
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}),
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None,
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],
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Self::AutoV6(prefix_len) => [
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Some(CidrAutoTemplate {
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family: CidrAutoTemplateFamily::V6,
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prefix_len,
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}),
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None,
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],
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Self::AutoDual(prefix_len) => [
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Some(CidrAutoTemplate {
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family: CidrAutoTemplateFamily::V4,
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prefix_len,
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}),
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Some(CidrAutoTemplate {
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family: CidrAutoTemplateFamily::V6,
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prefix_len: prefix_len.saturating_mul(4),
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}),
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],
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}
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}
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}
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impl fmt::Display for CidrRateLimitKey {
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fn fmt(&self, formatter: &mut fmt::Formatter<'_>) -> fmt::Result {
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match self {
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Self::Network(cidr) => write!(formatter, "{cidr}"),
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Self::AutoV4(prefix_len) => write!(formatter, "*4/{prefix_len}"),
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Self::AutoV6(prefix_len) => write!(formatter, "*6/{prefix_len}"),
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Self::AutoDual(prefix_len) => write!(formatter, "*/{prefix_len}"),
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}
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}
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}
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impl Serialize for CidrRateLimitKey {
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fn serialize<S>(&self, serializer: S) -> std::result::Result<S::Ok, S::Error>
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where
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S: serde::Serializer,
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{
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serializer.collect_str(self)
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}
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}
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impl<'de> Deserialize<'de> for CidrRateLimitKey {
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fn deserialize<D>(deserializer: D) -> std::result::Result<Self, D::Error>
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where
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D: serde::Deserializer<'de>,
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{
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let value = String::deserialize(deserializer)?;
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parse_cidr_rate_limit_key(&value).map_err(serde::de::Error::custom)
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}
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}
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fn parse_cidr_rate_limit_key(value: &str) -> std::result::Result<CidrRateLimitKey, String> {
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if let Some(prefix) = value.strip_prefix("*4/") {
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return parse_cidr_auto_prefix(value, prefix, 32).map(CidrRateLimitKey::AutoV4);
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}
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if let Some(prefix) = value.strip_prefix("*6/") {
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return parse_cidr_auto_prefix(value, prefix, 128).map(CidrRateLimitKey::AutoV6);
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}
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if let Some(prefix) = value.strip_prefix("*/") {
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return parse_cidr_auto_prefix(value, prefix, 32).map(CidrRateLimitKey::AutoDual);
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}
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if value.starts_with('*') {
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return Err(format!(
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"invalid CIDR rate limit key {value:?}; expected CIDR, *4/N, *6/N, or */N"
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));
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}
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value
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.parse::<IpNetwork>()
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.map(CidrRateLimitKey::Network)
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.map_err(|error| {
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format!(
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"invalid CIDR rate limit key {value:?}: {error}; expected CIDR, *4/N, *6/N, or */N"
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)
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})
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}
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fn parse_cidr_auto_prefix(
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key: &str,
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prefix: &str,
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max_prefix: u8,
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) -> std::result::Result<u8, String> {
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let prefix = prefix.parse::<u8>().map_err(|_| {
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format!("invalid CIDR auto-template key {key:?}; prefix must be within 0..={max_prefix}")
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})?;
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if prefix > max_prefix {
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return Err(format!(
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"invalid CIDR auto-template key {key:?}; prefix must be within 0..={max_prefix}"
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));
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}
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Ok(prefix)
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}
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/// Transport rate limit in bits-per-second.
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#[derive(Debug, Clone, Copy, Default, PartialEq, Eq, Serialize, Deserialize)]
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pub struct RateLimitBps {
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/// Upload direction limit in bits-per-second; `0` means unlimited.
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#[serde(default)]
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pub up_bps: u64,
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/// Download direction limit in bits-per-second; `0` means unlimited.
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#[serde(default)]
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pub down_bps: u64,
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}
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