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			157 lines
		
	
	
		
			5.1 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			157 lines
		
	
	
		
			5.1 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
package cache
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import (
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	"context"
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	"math"
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	"time"
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	"github.com/coredns/coredns/plugin"
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	"github.com/coredns/coredns/plugin/metadata"
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	"github.com/coredns/coredns/plugin/metrics"
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	"github.com/coredns/coredns/request"
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	"github.com/miekg/dns"
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)
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// ServeDNS implements the plugin.Handler interface.
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func (c *Cache) ServeDNS(ctx context.Context, w dns.ResponseWriter, r *dns.Msg) (int, error) {
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	rc := r.Copy() // We potentially modify r, to prevent other plugins from seeing this (r is a pointer), copy r into rc.
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	state := request.Request{W: w, Req: rc}
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	do := state.Do()
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	cd := r.CheckingDisabled
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	ad := r.AuthenticatedData
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	zone := plugin.Zones(c.Zones).Matches(state.Name())
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	if zone == "" {
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		return plugin.NextOrFailure(c.Name(), c.Next, ctx, w, rc)
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	}
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	now := c.now().UTC()
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	server := metrics.WithServer(ctx)
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	// On cache refresh, we will just use the DO bit from the incoming query for the refresh since we key our cache
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	// with the query DO bit. That means two separate cache items for the query DO bit true or false. In the situation
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	// in which upstream doesn't support DNSSEC, the two cache items will effectively be the same. Regardless, any
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	// DNSSEC RRs in the response are written to cache with the response.
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	i := c.getIgnoreTTL(now, state, server)
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	if i == nil {
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		crr := &ResponseWriter{ResponseWriter: w, Cache: c, state: state, server: server, do: do, ad: ad, cd: cd,
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			nexcept: c.nexcept, pexcept: c.pexcept, wildcardFunc: wildcardFunc(ctx)}
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		return c.doRefresh(ctx, state, crr)
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	}
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	ttl := i.ttl(now)
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	if ttl < 0 {
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		// serve stale behavior
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		if c.verifyStale {
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			crr := &ResponseWriter{ResponseWriter: w, Cache: c, state: state, server: server, do: do, cd: cd}
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			cw := newVerifyStaleResponseWriter(crr)
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			ret, err := c.doRefresh(ctx, state, cw)
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			if cw.refreshed {
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				return ret, err
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			}
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		}
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		// Adjust the time to get a 0 TTL in the reply built from a stale item.
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		now = now.Add(time.Duration(ttl) * time.Second)
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		if !c.verifyStale {
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			cw := newPrefetchResponseWriter(server, state, c)
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			go c.doPrefetch(ctx, state, cw, i, now)
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		}
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		servedStale.WithLabelValues(server, c.zonesMetricLabel, c.viewMetricLabel).Inc()
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	} else if c.shouldPrefetch(i, now) {
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		cw := newPrefetchResponseWriter(server, state, c)
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		go c.doPrefetch(ctx, state, cw, i, now)
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	}
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	if i.wildcard != "" {
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		// Set wildcard source record name to metadata
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		metadata.SetValueFunc(ctx, "zone/wildcard", func() string {
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			return i.wildcard
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		})
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	}
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	if c.keepttl {
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		// If keepttl is enabled we fake the current time to the stored
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		// one so that we always get the original TTL
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		now = i.stored
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	}
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	resp := i.toMsg(r, now, do, ad)
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	w.WriteMsg(resp)
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	return dns.RcodeSuccess, nil
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}
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func wildcardFunc(ctx context.Context) func() string {
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	return func() string {
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		// Get wildcard source record name from metadata
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		if f := metadata.ValueFunc(ctx, "zone/wildcard"); f != nil {
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			return f()
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		}
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		return ""
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	}
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}
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func (c *Cache) doPrefetch(ctx context.Context, state request.Request, cw *ResponseWriter, i *item, now time.Time) {
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	cachePrefetches.WithLabelValues(cw.server, c.zonesMetricLabel, c.viewMetricLabel).Inc()
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	c.doRefresh(ctx, state, cw)
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	// When prefetching we loose the item i, and with it the frequency
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	// that we've gathered sofar. See we copy the frequencies info back
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	// into the new item that was stored in the cache.
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	if i1 := c.exists(state); i1 != nil {
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		i1.Reset(now, i.Hits())
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	}
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}
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func (c *Cache) doRefresh(ctx context.Context, state request.Request, cw dns.ResponseWriter) (int, error) {
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	return plugin.NextOrFailure(c.Name(), c.Next, ctx, cw, state.Req)
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}
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func (c *Cache) shouldPrefetch(i *item, now time.Time) bool {
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	if c.prefetch <= 0 {
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		return false
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	}
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	i.Update(c.duration, now)
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	threshold := int(math.Ceil(float64(c.percentage) / 100 * float64(i.origTTL)))
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	return i.Hits() >= c.prefetch && i.ttl(now) <= threshold
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}
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// Name implements the Handler interface.
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func (c *Cache) Name() string { return "cache" }
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// getIgnoreTTL unconditionally returns an item if it exists in the cache.
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func (c *Cache) getIgnoreTTL(now time.Time, state request.Request, server string) *item {
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	k := hash(state.Name(), state.QType(), state.Do(), state.Req.CheckingDisabled)
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	cacheRequests.WithLabelValues(server, c.zonesMetricLabel, c.viewMetricLabel).Inc()
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	if i, ok := c.ncache.Get(k); ok {
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		itm := i.(*item)
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		ttl := itm.ttl(now)
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		if itm.matches(state) && (ttl > 0 || (c.staleUpTo > 0 && -ttl < int(c.staleUpTo.Seconds()))) {
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			cacheHits.WithLabelValues(server, Denial, c.zonesMetricLabel, c.viewMetricLabel).Inc()
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			return i.(*item)
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		}
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	}
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	if i, ok := c.pcache.Get(k); ok {
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		itm := i.(*item)
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		ttl := itm.ttl(now)
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		if itm.matches(state) && (ttl > 0 || (c.staleUpTo > 0 && -ttl < int(c.staleUpTo.Seconds()))) {
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			cacheHits.WithLabelValues(server, Success, c.zonesMetricLabel, c.viewMetricLabel).Inc()
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			return i.(*item)
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		}
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	}
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	cacheMisses.WithLabelValues(server, c.zonesMetricLabel, c.viewMetricLabel).Inc()
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	return nil
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}
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func (c *Cache) exists(state request.Request) *item {
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	k := hash(state.Name(), state.QType(), state.Do(), state.Req.CheckingDisabled)
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	if i, ok := c.ncache.Get(k); ok {
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		return i.(*item)
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	}
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	if i, ok := c.pcache.Get(k); ok {
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		return i.(*item)
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	}
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	return nil
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}
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