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CIDR query routing (#1159)
* core: allow all CIDR ranges in zone specifications Allow (e.g.) a v4 reverse on a /17. If a zone is specified in such a way a FilterFunc is set in the config. This filter is checked against incoming queries. For all other queries this adds a 'x != nil' check which will not impact performace too much. Benchmark function is added as well to check for this as wel. Add multiple tests in tests/server_reverse_test.go. Benchmark shows in the non-reverse case this hardly impact the speed: ~~~ classless: pkg: github.com/coredns/coredns/core/dnsserver BenchmarkCoreServeDNS-4 1000000 1431 ns/op 16 B/op 1 allocs/op pkg: github.com/coredns/coredns/core/dnsserver BenchmarkCoreServeDNS-4 1000000 1429 ns/op 16 B/op 1 allocs/op master: pkg: github.com/coredns/coredns/core/dnsserver BenchmarkCoreServeDNS-4 1000000 1412 ns/op 16 B/op 1 allocs/op pkg: github.com/coredns/coredns/core/dnsserver BenchmarkCoreServeDNS-4 1000000 1429 ns/op 16 B/op 1 allocs/op ~~~ * README.md updates
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@@ -45,8 +45,9 @@ func TestNormalizeZoneReverse(t *testing.T) {
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{"10.0.0.0/24.:53", "dns://10.0.0.0/24.:53", false},
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// non %8==0 netmasks
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{"2003::53/67", "dns://2003::53/67.:53", false},
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{"10.0.0.0/25.", "dns://10.0.0.0/25.:53", false},
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{"2003::53/67", "dns://0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.0.3.0.0.2.ip6.arpa.:53", false},
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{"10.0.0.0/25.", "dns://10.0.0.0/25.:53", false}, // has dot
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{"10.0.0.0/25", "dns://0.0.10.in-addr.arpa.:53", false},
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} {
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addr, err := normalizeZone(test.input)
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actual := addr.String()
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