mirror of https://github.com/status-im/consul.git
549 lines
16 KiB
Go
549 lines
16 KiB
Go
package structs
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import (
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"fmt"
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"strings"
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"github.com/hashicorp/consul/acl"
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"github.com/miekg/dns"
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)
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// BoundRoute indicates a route that has parent gateways which
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// can be accessed by calling the GetParents associated function.
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type BoundRoute interface {
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ControlledConfigEntry
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GetParents() []ResourceReference
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GetProtocol() APIGatewayListenerProtocol
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GetServiceNames() []ServiceName
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}
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// HTTPRouteConfigEntry manages the configuration for a HTTP route
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// with the given name.
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type HTTPRouteConfigEntry struct {
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// Kind of the config entry. This will be set to structs.HTTPRoute.
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Kind string
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// Name is used to match the config entry with its associated set
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// of resources, which may include routers, splitters, filters, etc.
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Name string
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// Parents is a list of gateways that this route should be bound to
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Parents []ResourceReference
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// Rules are a list of HTTP-based routing rules that this route should
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// use for constructing a routing table.
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Rules []HTTPRouteRule
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// Hostnames are the hostnames for which this HTTPRoute should respond to requests.
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Hostnames []string
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Meta map[string]string `json:",omitempty"`
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// Status is the asynchronous reconciliation status which an HTTPRoute propagates to the user.
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Status Status
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acl.EnterpriseMeta `hcl:",squash" mapstructure:",squash"`
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RaftIndex
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}
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func (e *HTTPRouteConfigEntry) GetKind() string { return HTTPRoute }
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func (e *HTTPRouteConfigEntry) GetName() string { return e.Name }
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func (e *HTTPRouteConfigEntry) GetMeta() map[string]string { return e.Meta }
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func (e *HTTPRouteConfigEntry) GetEnterpriseMeta() *acl.EnterpriseMeta { return &e.EnterpriseMeta }
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func (e *HTTPRouteConfigEntry) GetRaftIndex() *RaftIndex { return &e.RaftIndex }
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var _ ControlledConfigEntry = (*HTTPRouteConfigEntry)(nil)
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func (e *HTTPRouteConfigEntry) GetStatus() Status { return e.Status }
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func (e *HTTPRouteConfigEntry) SetStatus(status Status) { e.Status = status }
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func (e *HTTPRouteConfigEntry) DefaultStatus() Status { return Status{} }
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var _ BoundRoute = (*HTTPRouteConfigEntry)(nil)
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func (e *HTTPRouteConfigEntry) GetParents() []ResourceReference { return e.Parents }
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func (e *HTTPRouteConfigEntry) GetProtocol() APIGatewayListenerProtocol { return ListenerProtocolHTTP }
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func (e *HTTPRouteConfigEntry) GetServiceNames() []ServiceName {
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services := []ServiceName{}
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for _, service := range e.GetServices() {
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services = append(services, NewServiceName(service.Name, &service.EnterpriseMeta))
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}
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return services
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}
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func (e *HTTPRouteConfigEntry) GetServices() []HTTPService {
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targets := []HTTPService{}
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for _, rule := range e.Rules {
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targets = append(targets, rule.Services...)
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}
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return targets
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}
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func (e *HTTPRouteConfigEntry) Normalize() error {
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for i, parent := range e.Parents {
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if parent.Kind == "" {
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parent.Kind = APIGateway
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e.Parents[i] = parent
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}
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}
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for i, rule := range e.Rules {
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for j, match := range rule.Matches {
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rule.Matches[j] = normalizeHTTPMatch(match)
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}
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e.Rules[i] = rule
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}
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return nil
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}
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func normalizeHTTPMatch(match HTTPMatch) HTTPMatch {
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method := string(match.Method)
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method = strings.ToUpper(method)
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match.Method = HTTPMatchMethod(method)
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pathMatch := match.Path.Match
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if string(pathMatch) == "" {
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match.Path.Match = HTTPPathMatchPrefix
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match.Path.Value = "/"
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}
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return match
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}
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func (e *HTTPRouteConfigEntry) Validate() error {
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for _, host := range e.Hostnames {
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// validate that each host referenced in a valid dns name and has
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// no wildcards in it
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if _, ok := dns.IsDomainName(host); !ok {
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return fmt.Errorf("host %q must be a valid DNS hostname", host)
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}
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if strings.ContainsRune(host, '*') {
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return fmt.Errorf("host %q must not be a wildcard", host)
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}
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}
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validParentKinds := map[string]bool{
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APIGateway: true,
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}
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for _, parent := range e.Parents {
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if !validParentKinds[parent.Kind] {
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return fmt.Errorf("unsupported parent kind: %q, must be 'api-gateway'", parent.Kind)
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}
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}
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if err := validateConfigEntryMeta(e.Meta); err != nil {
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return err
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}
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for i, rule := range e.Rules {
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if err := validateRule(rule); err != nil {
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return fmt.Errorf("Rule[%d], %w", i, err)
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}
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}
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return nil
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}
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func validateRule(rule HTTPRouteRule) error {
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if err := validateFilters(rule.Filters); err != nil {
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return err
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}
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for i, match := range rule.Matches {
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if err := validateMatch(match); err != nil {
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return fmt.Errorf("Match[%d], %w", i, err)
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}
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}
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for i, service := range rule.Services {
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if err := validateHTTPService(service); err != nil {
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return fmt.Errorf("Service[%d], %w", i, err)
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}
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}
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return nil
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}
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func validateMatch(match HTTPMatch) error {
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if match.Method != HTTPMatchMethodAll {
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if !isValidHTTPMethod(string(match.Method)) {
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return fmt.Errorf("Method contains an invalid method %q", match.Method)
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}
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}
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for i, query := range match.Query {
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if err := validateHTTPQueryMatch(query); err != nil {
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return fmt.Errorf("Query[%d], %w", i, err)
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}
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}
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for i, header := range match.Headers {
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if err := validateHTTPHeaderMatch(header); err != nil {
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return fmt.Errorf("Headers[%d], %w", i, err)
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}
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}
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if err := validateHTTPPathMatch(match.Path); err != nil {
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return fmt.Errorf("Path, %w", err)
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}
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return nil
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}
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func validateHTTPService(service HTTPService) error {
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return validateFilters(service.Filters)
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}
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func validateFilters(filter HTTPFilters) error {
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for i, header := range filter.Headers {
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if err := validateHeaderFilter(header); err != nil {
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return fmt.Errorf("HTTPFilters, Headers[%d], %w", i, err)
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}
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}
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for i, rewrite := range filter.URLRewrites {
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if err := validateURLRewrite(rewrite); err != nil {
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return fmt.Errorf("HTTPFilters, URLRewrite[%d], %w", i, err)
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}
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}
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return nil
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}
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func validateURLRewrite(rewrite URLRewrite) error {
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// TODO: we don't really have validation of the actual params
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// passed as "PrefixRewrite" in our discoverychain config
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// entries, figure out if we should have something here
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return nil
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}
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func validateHeaderFilter(filter HTTPHeaderFilter) error {
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// TODO: we don't really have validation of the values
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// passed as header modifiers in our current discoverychain
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// config entries, figure out if we need to
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return nil
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}
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func validateHTTPQueryMatch(query HTTPQueryMatch) error {
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if query.Name == "" {
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return fmt.Errorf("missing required Name field")
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}
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switch query.Match {
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case HTTPQueryMatchExact,
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HTTPQueryMatchPresent,
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HTTPQueryMatchRegularExpression:
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return nil
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default:
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return fmt.Errorf("match type should be one of present, exact, or regex")
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}
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}
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func validateHTTPHeaderMatch(header HTTPHeaderMatch) error {
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if header.Name == "" {
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return fmt.Errorf("missing required Name field")
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}
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switch header.Match {
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case HTTPHeaderMatchExact,
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HTTPHeaderMatchPrefix,
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HTTPHeaderMatchRegularExpression,
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HTTPHeaderMatchSuffix,
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HTTPHeaderMatchPresent:
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return nil
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default:
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return fmt.Errorf("match type should be one of present, exact, prefix, suffix, or regex")
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}
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}
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func validateHTTPPathMatch(path HTTPPathMatch) error {
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switch path.Match {
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case HTTPPathMatchExact,
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HTTPPathMatchPrefix:
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if !strings.HasPrefix(path.Value, "/") {
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return fmt.Errorf("%s type match doesn't start with '/': %q", path.Match, path.Value)
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}
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fallthrough
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case HTTPPathMatchRegularExpression:
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return nil
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default:
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return fmt.Errorf("match type should be one of exact, prefix, or regex")
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}
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}
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func (e *HTTPRouteConfigEntry) CanRead(authz acl.Authorizer) error {
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var authzContext acl.AuthorizerContext
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e.FillAuthzContext(&authzContext)
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return authz.ToAllowAuthorizer().MeshReadAllowed(&authzContext)
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}
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func (e *HTTPRouteConfigEntry) CanWrite(authz acl.Authorizer) error {
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var authzContext acl.AuthorizerContext
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e.FillAuthzContext(&authzContext)
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return authz.ToAllowAuthorizer().MeshWriteAllowed(&authzContext)
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}
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func (e *HTTPRouteConfigEntry) FilteredHostnames(listenerHostname string) []string {
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if len(e.Hostnames) == 0 {
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// we have no hostnames specified here, so treat it like a wildcard
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return []string{listenerHostname}
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}
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wildcardHostname := strings.ContainsRune(listenerHostname, '*') || listenerHostname == "*"
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listenerHostname = strings.TrimPrefix(strings.TrimPrefix(listenerHostname, "*"), ".")
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hostnames := []string{}
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for _, hostname := range e.Hostnames {
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if wildcardHostname {
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if strings.HasSuffix(hostname, listenerHostname) {
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hostnames = append(hostnames, hostname)
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}
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continue
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}
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if hostname == listenerHostname {
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hostnames = append(hostnames, hostname)
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}
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}
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return hostnames
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}
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// HTTPMatch specifies the criteria that should be
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// used in determining whether or not a request should
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// be routed to a given set of services.
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type HTTPMatch struct {
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Headers []HTTPHeaderMatch
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Method HTTPMatchMethod
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Path HTTPPathMatch
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Query []HTTPQueryMatch
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}
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// HTTPMatchMethod specifies which type of HTTP verb should
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// be used for matching a given request.
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type HTTPMatchMethod string
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const (
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HTTPMatchMethodAll HTTPMatchMethod = ""
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HTTPMatchMethodConnect HTTPMatchMethod = "CONNECT"
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HTTPMatchMethodDelete HTTPMatchMethod = "DELETE"
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HTTPMatchMethodGet HTTPMatchMethod = "GET"
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HTTPMatchMethodHead HTTPMatchMethod = "HEAD"
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HTTPMatchMethodOptions HTTPMatchMethod = "OPTIONS"
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HTTPMatchMethodPatch HTTPMatchMethod = "PATCH"
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HTTPMatchMethodPost HTTPMatchMethod = "POST"
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HTTPMatchMethodPut HTTPMatchMethod = "PUT"
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HTTPMatchMethodTrace HTTPMatchMethod = "TRACE"
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)
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// HTTPHeaderMatchType specifies how header matching criteria
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// should be applied to a request.
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type HTTPHeaderMatchType string
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const (
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HTTPHeaderMatchExact HTTPHeaderMatchType = "exact"
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HTTPHeaderMatchPrefix HTTPHeaderMatchType = "prefix"
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HTTPHeaderMatchPresent HTTPHeaderMatchType = "present"
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HTTPHeaderMatchRegularExpression HTTPHeaderMatchType = "regex"
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HTTPHeaderMatchSuffix HTTPHeaderMatchType = "suffix"
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)
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// HTTPHeaderMatch specifies how a match should be done
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// on a request's headers.
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type HTTPHeaderMatch struct {
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Match HTTPHeaderMatchType
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Name string
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Value string
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}
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// HTTPPathMatchType specifies how path matching criteria
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// should be applied to a request.
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type HTTPPathMatchType string
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const (
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HTTPPathMatchExact HTTPPathMatchType = "exact"
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HTTPPathMatchPrefix HTTPPathMatchType = "prefix"
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HTTPPathMatchRegularExpression HTTPPathMatchType = "regex"
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)
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// HTTPPathMatch specifies how a match should be done
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// on a request's path.
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type HTTPPathMatch struct {
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Match HTTPPathMatchType
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Value string
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}
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// HTTPQueryMatchType specifies how querys matching criteria
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// should be applied to a request.
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type HTTPQueryMatchType string
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const (
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HTTPQueryMatchExact HTTPQueryMatchType = "exact"
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HTTPQueryMatchPresent HTTPQueryMatchType = "present"
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HTTPQueryMatchRegularExpression HTTPQueryMatchType = "regex"
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)
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// HTTPQueryMatch specifies how a match should be done
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// on a request's query parameters.
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type HTTPQueryMatch struct {
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Match HTTPQueryMatchType
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Name string
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Value string
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}
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// HTTPFilters specifies a list of filters used to modify a request
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// before it is routed to an upstream.
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type HTTPFilters struct {
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Headers []HTTPHeaderFilter
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URLRewrites []URLRewrite
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}
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// HTTPHeaderFilter specifies how HTTP headers should be modified.
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type HTTPHeaderFilter struct {
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Add map[string]string
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Remove []string
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Set map[string]string
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}
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type URLRewrite struct {
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Path string
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}
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// HTTPRouteRule specifies the routing rules used to determine what upstream
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// service an HTTP request is routed to.
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type HTTPRouteRule struct {
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// Filters is a list of HTTP-based filters used to modify a request prior
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// to routing it to the upstream service
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Filters HTTPFilters
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// Matches specified the matching criteria used in the routing table. If a
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// request matches the given HTTPMatch configuration, then traffic is routed
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// to services specified in the Services field.
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Matches []HTTPMatch
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// Services is a list of HTTP-based services to route to if the request matches
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// the rules specified in the Matches field.
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Services []HTTPService
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}
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// HTTPService is a service reference for HTTP-based routing rules
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type HTTPService struct {
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Name string
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// Weight is an arbitrary integer used in calculating how much
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// traffic should be sent to the given service.
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Weight int
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// Filters is a list of HTTP-based filters used to modify a request prior
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// to routing it to the upstream service
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Filters HTTPFilters
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acl.EnterpriseMeta
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}
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func (s HTTPService) ServiceName() ServiceName {
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return NewServiceName(s.Name, &s.EnterpriseMeta)
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}
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// TCPRouteConfigEntry manages the configuration for a TCP route
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// with the given name.
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type TCPRouteConfigEntry struct {
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// Kind of the config entry. This will be set to structs.TCPRoute.
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Kind string
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// Name is used to match the config entry with its associated set
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// of resources.
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Name string
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// Parents is a list of gateways that this route should be bound to
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Parents []ResourceReference
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// Services is a list of TCP-based services that this should route to.
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// Currently, this must specify at maximum one service.
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Services []TCPService
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Meta map[string]string `json:",omitempty"`
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// Status is the asynchronous reconciliation status which a TCPRoute propagates to the user.
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Status Status
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acl.EnterpriseMeta `hcl:",squash" mapstructure:",squash"`
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RaftIndex
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}
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func (e *TCPRouteConfigEntry) GetKind() string { return TCPRoute }
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func (e *TCPRouteConfigEntry) GetName() string { return e.Name }
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func (e *TCPRouteConfigEntry) GetMeta() map[string]string { return e.Meta }
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func (e *TCPRouteConfigEntry) GetRaftIndex() *RaftIndex { return &e.RaftIndex }
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func (e *TCPRouteConfigEntry) GetEnterpriseMeta() *acl.EnterpriseMeta { return &e.EnterpriseMeta }
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var _ ControlledConfigEntry = (*TCPRouteConfigEntry)(nil)
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func (e *TCPRouteConfigEntry) GetStatus() Status { return e.Status }
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func (e *TCPRouteConfigEntry) SetStatus(status Status) { e.Status = status }
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func (e *TCPRouteConfigEntry) DefaultStatus() Status { return Status{} }
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var _ BoundRoute = (*TCPRouteConfigEntry)(nil)
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func (e *TCPRouteConfigEntry) GetParents() []ResourceReference { return e.Parents }
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func (e *TCPRouteConfigEntry) GetProtocol() APIGatewayListenerProtocol { return ListenerProtocolTCP }
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func (e *TCPRouteConfigEntry) GetServiceNames() []ServiceName {
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services := []ServiceName{}
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for _, service := range e.Services {
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services = append(services, NewServiceName(service.Name, &service.EnterpriseMeta))
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}
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return services
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}
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func (e *TCPRouteConfigEntry) GetServices() []TCPService { return e.Services }
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func (e *TCPRouteConfigEntry) Normalize() error {
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for i, parent := range e.Parents {
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if parent.Kind == "" {
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parent.Kind = APIGateway
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e.Parents[i] = parent
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}
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}
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return nil
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}
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func (e *TCPRouteConfigEntry) Validate() error {
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validParentKinds := map[string]bool{
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APIGateway: true,
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}
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if len(e.Services) > 1 {
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return fmt.Errorf("tcp-route currently only supports one service")
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}
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for _, parent := range e.Parents {
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if !validParentKinds[parent.Kind] {
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return fmt.Errorf("unsupported parent kind: %q, must be 'api-gateway'", parent.Kind)
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}
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}
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if err := validateConfigEntryMeta(e.Meta); err != nil {
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return err
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}
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return nil
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}
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func (e *TCPRouteConfigEntry) CanRead(authz acl.Authorizer) error {
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var authzContext acl.AuthorizerContext
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e.FillAuthzContext(&authzContext)
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return authz.ToAllowAuthorizer().MeshReadAllowed(&authzContext)
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}
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func (e *TCPRouteConfigEntry) CanWrite(authz acl.Authorizer) error {
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var authzContext acl.AuthorizerContext
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e.FillAuthzContext(&authzContext)
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return authz.ToAllowAuthorizer().MeshWriteAllowed(&authzContext)
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}
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// TCPService is a service reference for a TCPRoute
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type TCPService struct {
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Name string
|
|
// Weight specifies the proportion of requests forwarded to the referenced service.
|
|
// This is computed as weight/(sum of all weights in the list of services).
|
|
Weight int
|
|
|
|
acl.EnterpriseMeta
|
|
}
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|
|
|
func (s TCPService) ServiceName() ServiceName {
|
|
return NewServiceName(s.Name, &s.EnterpriseMeta)
|
|
}
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