158 lines
3.9 KiB
Go
158 lines
3.9 KiB
Go
package topdown
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import (
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"fmt"
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"math/big"
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"net"
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"github.com/open-policy-agent/opa/ast"
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"github.com/open-policy-agent/opa/topdown/builtins"
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)
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func getNetFromOperand(v ast.Value) (*net.IPNet, error) {
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subnetStringA, err := builtins.StringOperand(v, 1)
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if err != nil {
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return nil, err
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}
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_, cidrnet, err := net.ParseCIDR(string(subnetStringA))
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if err != nil {
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return nil, err
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}
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return cidrnet, nil
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}
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func getLastIP(cidr *net.IPNet) (net.IP, error) {
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prefixLen, bits := cidr.Mask.Size()
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if prefixLen == 0 && bits == 0 {
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// non-standard mask, see https://golang.org/pkg/net/#IPMask.Size
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return nil, fmt.Errorf("CIDR mask is in non-standard format")
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}
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var lastIP []byte
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if prefixLen == bits {
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// Special case for single ip address ranges ex: 192.168.1.1/32
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// We can just use the starting IP as the last IP
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lastIP = cidr.IP
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} else {
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// Use big.Int's so we can handle ipv6 addresses
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firstIPInt := new(big.Int)
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firstIPInt.SetBytes(cidr.IP)
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hostLen := uint(bits) - uint(prefixLen)
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lastIPInt := big.NewInt(1)
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lastIPInt.Lsh(lastIPInt, hostLen)
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lastIPInt.Sub(lastIPInt, big.NewInt(1))
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lastIPInt.Or(lastIPInt, firstIPInt)
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ipBytes := lastIPInt.Bytes()
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lastIP = make([]byte, bits/8)
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// Pack our IP bytes into the end of the return array,
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// since big.Int.Bytes() removes front zero padding.
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for i := 1; i <= len(lastIPInt.Bytes()); i++ {
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lastIP[len(lastIP)-i] = ipBytes[len(ipBytes)-i]
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}
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}
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return lastIP, nil
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}
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func builtinNetCIDRIntersects(a, b ast.Value) (ast.Value, error) {
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cidrnetA, err := getNetFromOperand(a)
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if err != nil {
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return nil, err
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}
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cidrnetB, err := getNetFromOperand(b)
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if err != nil {
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return nil, err
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}
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// If either net contains the others starting IP they are overlapping
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cidrsOverlap := (cidrnetA.Contains(cidrnetB.IP) || cidrnetB.Contains(cidrnetA.IP))
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return ast.Boolean(cidrsOverlap), nil
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}
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func builtinNetCIDRContains(a, b ast.Value) (ast.Value, error) {
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cidrnetA, err := getNetFromOperand(a)
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if err != nil {
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return nil, err
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}
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// b could be either an IP addressor CIDR string, try to parse it as an IP first, fall back to CIDR
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bStr, err := builtins.StringOperand(b, 1)
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if err != nil {
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return nil, err
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}
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ip := net.ParseIP(string(bStr))
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if ip != nil {
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return ast.Boolean(cidrnetA.Contains(ip)), nil
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}
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// It wasn't an IP, try and parse it as a CIDR
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cidrnetB, err := getNetFromOperand(b)
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if err != nil {
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return nil, fmt.Errorf("not a valid textual representation of an IP address or CIDR: %s", string(bStr))
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}
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// We can determine if cidr A contains cidr B iff A contains the starting address of B and the last address in B.
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cidrContained := false
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if cidrnetA.Contains(cidrnetB.IP) {
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// Only spend time calculating the last IP if the starting IP is already verified to be in cidr A
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lastIP, err := getLastIP(cidrnetB)
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if err != nil {
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return nil, err
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}
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cidrContained = cidrnetA.Contains(lastIP)
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}
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return ast.Boolean(cidrContained), nil
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}
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func builtinNetCIDRExpand(bctx BuiltinContext, operands []*ast.Term, iter func(*ast.Term) error) error {
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s, err := builtins.StringOperand(operands[0].Value, 1)
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if err != nil {
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return err
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}
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ip, ipNet, err := net.ParseCIDR(string(s))
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if err != nil {
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return err
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}
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result := ast.NewSet()
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for ip := ip.Mask(ipNet.Mask); ipNet.Contains(ip); incIP(ip) {
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if bctx.Cancel != nil && bctx.Cancel.Cancelled() {
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return &Error{
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Code: CancelErr,
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Message: "net.cidr_expand: timed out before generating all IP addresses",
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}
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}
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result.Add(ast.StringTerm(ip.String()))
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}
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return iter(ast.NewTerm(result))
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}
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func incIP(ip net.IP) {
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for j := len(ip) - 1; j >= 0; j-- {
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ip[j]++
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if ip[j] > 0 {
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break
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}
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}
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}
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func init() {
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RegisterFunctionalBuiltin2(ast.NetCIDROverlap.Name, builtinNetCIDRContains)
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RegisterFunctionalBuiltin2(ast.NetCIDRIntersects.Name, builtinNetCIDRIntersects)
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RegisterFunctionalBuiltin2(ast.NetCIDRContains.Name, builtinNetCIDRContains)
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RegisterBuiltinFunc(ast.NetCIDRExpand.Name, builtinNetCIDRExpand)
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}
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