mirror of
https://github.com/0rangebananaspy/authelia.git
synced 2024-09-14 22:47:21 +07:00
3c81e75d79
This adds an access-control command that checks the policy enforcement for a given criteria using a configuration file and refactors the configuration validation command to include all configuration sources.
155 lines
4.9 KiB
Go
155 lines
4.9 KiB
Go
package validator
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import (
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"fmt"
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"net"
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"regexp"
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"strings"
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"github.com/authelia/authelia/v4/internal/configuration/schema"
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"github.com/authelia/authelia/v4/internal/utils"
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)
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// IsPolicyValid check if policy is valid.
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func IsPolicyValid(policy string) (isValid bool) {
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return utils.IsStringInSlice(policy, validACLRulePolicies)
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}
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// IsResourceValid check if a resource is valid.
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func IsResourceValid(resource string) (err error) {
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_, err = regexp.Compile(resource)
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return err
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}
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// IsSubjectValid check if a subject is valid.
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func IsSubjectValid(subject string) (isValid bool) {
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return subject == "" || strings.HasPrefix(subject, "user:") || strings.HasPrefix(subject, "group:")
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}
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// IsNetworkGroupValid check if a network group is valid.
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func IsNetworkGroupValid(config schema.AccessControlConfiguration, network string) bool {
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for _, networks := range config.Networks {
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if network != networks.Name {
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continue
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} else {
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return true
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}
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}
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return false
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}
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// IsNetworkValid check if a network is valid.
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func IsNetworkValid(network string) (isValid bool) {
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if net.ParseIP(network) == nil {
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_, _, err := net.ParseCIDR(network)
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return err == nil
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}
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return true
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}
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func ruleDescriptor(position int, rule schema.ACLRule) string {
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if len(rule.Domains) == 0 {
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return fmt.Sprintf("#%d", position)
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}
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return fmt.Sprintf("#%d (domain '%s')", position, strings.Join(rule.Domains, ","))
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}
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// ValidateAccessControl validates access control configuration.
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func ValidateAccessControl(config *schema.Configuration, validator *schema.StructValidator) {
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if config.AccessControl.DefaultPolicy == "" {
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config.AccessControl.DefaultPolicy = policyDeny
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}
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if !IsPolicyValid(config.AccessControl.DefaultPolicy) {
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validator.Push(fmt.Errorf(errFmtAccessControlDefaultPolicyValue, strings.Join(validACLRulePolicies, "', '"), config.AccessControl.DefaultPolicy))
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}
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if config.AccessControl.Networks != nil {
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for _, n := range config.AccessControl.Networks {
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for _, networks := range n.Networks {
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if !IsNetworkValid(networks) {
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validator.Push(fmt.Errorf(errFmtAccessControlNetworkGroupIPCIDRInvalid, n.Name, networks))
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}
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}
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}
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}
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}
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// ValidateRules validates an ACL Rule configuration.
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func ValidateRules(config *schema.Configuration, validator *schema.StructValidator) {
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if config.AccessControl.Rules == nil || len(config.AccessControl.Rules) == 0 {
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if config.AccessControl.DefaultPolicy != policyOneFactor && config.AccessControl.DefaultPolicy != policyTwoFactor {
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validator.Push(fmt.Errorf(errFmtAccessControlDefaultPolicyWithoutRules, config.AccessControl.DefaultPolicy))
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return
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}
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validator.PushWarning(fmt.Errorf(errFmtAccessControlWarnNoRulesDefaultPolicy, config.AccessControl.DefaultPolicy))
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return
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}
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for i, rule := range config.AccessControl.Rules {
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rulePosition := i + 1
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if len(rule.Domains) == 0 {
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validator.Push(fmt.Errorf(errFmtAccessControlRuleNoDomains, ruleDescriptor(rulePosition, rule)))
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}
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if !IsPolicyValid(rule.Policy) {
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validator.Push(fmt.Errorf(errFmtAccessControlRuleInvalidPolicy, ruleDescriptor(rulePosition, rule), rule.Policy))
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}
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validateNetworks(rulePosition, rule, config.AccessControl, validator)
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validateResources(rulePosition, rule, validator)
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validateSubjects(rulePosition, rule, validator)
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validateMethods(rulePosition, rule, validator)
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if rule.Policy == policyBypass && len(rule.Subjects) != 0 {
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validator.Push(fmt.Errorf(errAccessControlRuleBypassPolicyInvalidWithSubjects, ruleDescriptor(rulePosition, rule)))
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}
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}
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}
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func validateNetworks(rulePosition int, rule schema.ACLRule, config schema.AccessControlConfiguration, validator *schema.StructValidator) {
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for _, network := range rule.Networks {
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if !IsNetworkValid(network) {
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if !IsNetworkGroupValid(config, network) {
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validator.Push(fmt.Errorf(errFmtAccessControlRuleNetworksInvalid, ruleDescriptor(rulePosition, rule), network))
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}
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}
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}
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}
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func validateResources(rulePosition int, rule schema.ACLRule, validator *schema.StructValidator) {
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for _, resource := range rule.Resources {
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if err := IsResourceValid(resource); err != nil {
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validator.Push(fmt.Errorf(errFmtAccessControlRuleResourceInvalid, ruleDescriptor(rulePosition, rule), resource, err))
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}
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}
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}
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func validateSubjects(rulePosition int, rule schema.ACLRule, validator *schema.StructValidator) {
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for _, subjectRule := range rule.Subjects {
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for _, subject := range subjectRule {
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if !IsSubjectValid(subject) {
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validator.Push(fmt.Errorf(errFmtAccessControlRuleSubjectInvalid, ruleDescriptor(rulePosition, rule), subject))
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}
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}
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}
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}
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func validateMethods(rulePosition int, rule schema.ACLRule, validator *schema.StructValidator) {
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for _, method := range rule.Methods {
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if !utils.IsStringInSliceFold(method, validACLRuleMethods) {
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validator.Push(fmt.Errorf(errFmtAccessControlRuleMethodInvalid, ruleDescriptor(rulePosition, rule), method, strings.Join(validACLRuleMethods, "', '")))
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}
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}
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}
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