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281 lines
7.2 KiB
Go
281 lines
7.2 KiB
Go
// Copyright (c) 2016-2017 Daniel Oaks <daniel@danieloaks.net>
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// released under the MIT license
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package connection_limits
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import (
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"crypto/md5"
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"errors"
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"fmt"
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"sync"
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"time"
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"github.com/ergochat/ergo/irc/flatip"
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"github.com/ergochat/ergo/irc/utils"
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)
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var (
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ErrLimitExceeded = errors.New("too many concurrent connections")
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ErrThrottleExceeded = errors.New("too many recent connection attempts")
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)
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type CustomLimitConfig struct {
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Nets []string
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MaxConcurrent int `yaml:"max-concurrent-connections"`
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MaxPerWindow int `yaml:"max-connections-per-window"`
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}
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// tuples the key-value pair of a CIDR and its custom limit/throttle values
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type customLimit struct {
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name [16]byte
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customID string // operator-configured identifier for a custom net
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maxConcurrent int
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maxPerWindow int
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nets []flatip.IPNet
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}
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type limiterKey struct {
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maskedIP flatip.IP
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prefixLen uint8 // 0 for the fake nets we generate for custom limits
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}
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// LimiterConfig controls the automated connection limits.
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// rawLimiterConfig contains all the YAML-visible fields;
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// LimiterConfig contains additional denormalized private fields
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type rawLimiterConfig struct {
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Count bool
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MaxConcurrent int `yaml:"max-concurrent-connections"`
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Throttle bool
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Window time.Duration
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MaxPerWindow int `yaml:"max-connections-per-window"`
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CidrLenIPv4 int `yaml:"cidr-len-ipv4"`
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CidrLenIPv6 int `yaml:"cidr-len-ipv6"`
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Exempted []string
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CustomLimits map[string]CustomLimitConfig `yaml:"custom-limits"`
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}
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type LimiterConfig struct {
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rawLimiterConfig
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exemptedNets []flatip.IPNet
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customLimits []customLimit
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}
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func (config *LimiterConfig) UnmarshalYAML(unmarshal func(interface{}) error) (err error) {
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if err = unmarshal(&config.rawLimiterConfig); err != nil {
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return err
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}
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return config.postprocess()
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}
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func (config *LimiterConfig) postprocess() (err error) {
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exemptedNets, err := utils.ParseNetList(config.Exempted)
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if err != nil {
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return fmt.Errorf("Could not parse limiter exemption list: %v", err.Error())
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}
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config.exemptedNets = make([]flatip.IPNet, len(exemptedNets))
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for i, exempted := range exemptedNets {
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config.exemptedNets[i] = flatip.FromNetIPNet(exempted)
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}
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for identifier, customLimitConf := range config.CustomLimits {
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nets := make([]flatip.IPNet, len(customLimitConf.Nets))
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for i, netStr := range customLimitConf.Nets {
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normalizedNet, err := flatip.ParseToNormalizedNet(netStr)
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if err != nil {
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return fmt.Errorf("Bad net %s in custom-limits block %s: %w", netStr, identifier, err)
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}
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nets[i] = normalizedNet
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}
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if len(customLimitConf.Nets) == 0 {
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// see #1421: this is the legacy config format where the
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// dictionary key of the block is a CIDR string
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normalizedNet, err := flatip.ParseToNormalizedNet(identifier)
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if err != nil {
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return fmt.Errorf("Custom limit block %s has no defined nets", identifier)
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}
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nets = []flatip.IPNet{normalizedNet}
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}
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config.customLimits = append(config.customLimits, customLimit{
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maxConcurrent: customLimitConf.MaxConcurrent,
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maxPerWindow: customLimitConf.MaxPerWindow,
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name: md5.Sum([]byte(identifier)),
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customID: identifier,
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nets: nets,
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})
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}
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return nil
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}
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// Limiter manages the automated client connection limits.
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type Limiter struct {
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sync.Mutex
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config *LimiterConfig
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// IP/CIDR -> count of clients connected from there:
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limiter map[limiterKey]int
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// IP/CIDR -> throttle state:
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throttler map[limiterKey]ThrottleDetails
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}
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// addrToKey canonicalizes `addr` to a string key, and returns
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// the relevant connection limit and throttle max-per-window values
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func (cl *Limiter) addrToKey(addr flatip.IP) (key limiterKey, customID string, limit int, throttle int) {
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for _, custom := range cl.config.customLimits {
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for _, net := range custom.nets {
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if net.Contains(addr) {
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return limiterKey{maskedIP: custom.name, prefixLen: 0}, custom.customID, custom.maxConcurrent, custom.maxPerWindow
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}
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}
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}
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var prefixLen int
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if addr.IsIPv4() {
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prefixLen = cl.config.CidrLenIPv4
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addr = addr.Mask(prefixLen, 32)
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prefixLen += 96
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} else {
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prefixLen = cl.config.CidrLenIPv6
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addr = addr.Mask(prefixLen, 128)
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}
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return limiterKey{maskedIP: addr, prefixLen: uint8(prefixLen)}, "", cl.config.MaxConcurrent, cl.config.MaxPerWindow
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}
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// AddClient adds a client to our population if possible. If we can't, throws an error instead.
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func (cl *Limiter) AddClient(addr flatip.IP) error {
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cl.Lock()
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defer cl.Unlock()
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// we don't track populations for exempted addresses or nets - this is by design
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if flatip.IPInNets(addr, cl.config.exemptedNets) {
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return nil
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}
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addrString, _, maxConcurrent, maxPerWindow := cl.addrToKey(addr)
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// check limiter
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var count int
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if cl.config.Count {
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count = cl.limiter[addrString] + 1
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if count > maxConcurrent {
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return ErrLimitExceeded
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}
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}
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if cl.config.Throttle {
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details := cl.throttler[addrString] // retrieve mutable throttle state from the map
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// add in constant state to process the limiting operation
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g := GenericThrottle{
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ThrottleDetails: details,
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Duration: cl.config.Window,
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Limit: maxPerWindow,
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}
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throttled, _ := g.Touch() // actually check the limit
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cl.throttler[addrString] = g.ThrottleDetails // store modified mutable state
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if throttled {
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// back out the limiter add
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return ErrThrottleExceeded
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}
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}
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// success, record in limiter
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if cl.config.Count {
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cl.limiter[addrString] = count
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}
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return nil
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}
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// RemoveClient removes the given address from our population
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func (cl *Limiter) RemoveClient(addr flatip.IP) {
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cl.Lock()
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defer cl.Unlock()
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if !cl.config.Count || flatip.IPInNets(addr, cl.config.exemptedNets) {
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return
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}
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addrString, _, _, _ := cl.addrToKey(addr)
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count := cl.limiter[addrString]
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count -= 1
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if count < 0 {
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count = 0
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}
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cl.limiter[addrString] = count
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}
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type LimiterStatus struct {
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Exempt bool
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Count int
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MaxCount int
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Throttle int
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MaxPerWindow int
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ThrottleDuration time.Duration
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}
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func (cl *Limiter) Status(addr flatip.IP) (netName string, status LimiterStatus) {
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cl.Lock()
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defer cl.Unlock()
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if flatip.IPInNets(addr, cl.config.exemptedNets) {
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status.Exempt = true
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return
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}
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status.ThrottleDuration = cl.config.Window
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limiterKey, customID, maxConcurrent, maxPerWindow := cl.addrToKey(addr)
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status.MaxCount = maxConcurrent
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status.MaxPerWindow = maxPerWindow
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status.Count = cl.limiter[limiterKey]
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status.Throttle = cl.throttler[limiterKey].Count
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netName = customID
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if netName == "" {
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netName = flatip.IPNet{
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IP: limiterKey.maskedIP,
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PrefixLen: limiterKey.prefixLen,
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}.String()
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}
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return
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}
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// ResetThrottle resets the throttle count for an IP
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func (cl *Limiter) ResetThrottle(addr flatip.IP) {
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cl.Lock()
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defer cl.Unlock()
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if !cl.config.Throttle || flatip.IPInNets(addr, cl.config.exemptedNets) {
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return
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}
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addrString, _, _, _ := cl.addrToKey(addr)
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delete(cl.throttler, addrString)
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}
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// ApplyConfig atomically applies a config update to a connection limit handler
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func (cl *Limiter) ApplyConfig(config *LimiterConfig) {
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cl.Lock()
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defer cl.Unlock()
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if cl.limiter == nil {
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cl.limiter = make(map[limiterKey]int)
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}
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if cl.throttler == nil {
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cl.throttler = make(map[limiterKey]ThrottleDetails)
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}
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cl.config = config
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}
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