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9fe4437bda
* Use vendored go-swagger * vendor go-swagger * revert un wanteed change * remove un-needed GO111MODULE * Update Makefile Co-Authored-By: techknowlogick <matti@mdranta.net>
477 lines
14 KiB
Go
477 lines
14 KiB
Go
// Copyright 2015 go-swagger maintainers
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package middleware
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import (
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"fmt"
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"net/http"
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fpath "path"
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"regexp"
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"strings"
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"github.com/go-openapi/runtime/security"
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"github.com/go-openapi/analysis"
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"github.com/go-openapi/errors"
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"github.com/go-openapi/loads"
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"github.com/go-openapi/runtime"
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"github.com/go-openapi/runtime/middleware/denco"
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"github.com/go-openapi/spec"
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"github.com/go-openapi/strfmt"
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)
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// RouteParam is a object to capture route params in a framework agnostic way.
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// implementations of the muxer should use these route params to communicate with the
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// swagger framework
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type RouteParam struct {
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Name string
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Value string
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}
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// RouteParams the collection of route params
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type RouteParams []RouteParam
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// Get gets the value for the route param for the specified key
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func (r RouteParams) Get(name string) string {
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vv, _, _ := r.GetOK(name)
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if len(vv) > 0 {
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return vv[len(vv)-1]
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}
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return ""
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}
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// GetOK gets the value but also returns booleans to indicate if a key or value
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// is present. This aids in validation and satisfies an interface in use there
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//
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// The returned values are: data, has key, has value
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func (r RouteParams) GetOK(name string) ([]string, bool, bool) {
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for _, p := range r {
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if p.Name == name {
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return []string{p.Value}, true, p.Value != ""
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}
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}
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return nil, false, false
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}
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// NewRouter creates a new context aware router middleware
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func NewRouter(ctx *Context, next http.Handler) http.Handler {
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if ctx.router == nil {
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ctx.router = DefaultRouter(ctx.spec, ctx.api)
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}
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return http.HandlerFunc(func(rw http.ResponseWriter, r *http.Request) {
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if _, rCtx, ok := ctx.RouteInfo(r); ok {
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next.ServeHTTP(rw, rCtx)
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return
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}
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// Not found, check if it exists in the other methods first
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if others := ctx.AllowedMethods(r); len(others) > 0 {
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ctx.Respond(rw, r, ctx.analyzer.RequiredProduces(), nil, errors.MethodNotAllowed(r.Method, others))
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return
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}
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ctx.Respond(rw, r, ctx.analyzer.RequiredProduces(), nil, errors.NotFound("path %s was not found", r.URL.EscapedPath()))
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})
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}
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// RoutableAPI represents an interface for things that can serve
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// as a provider of implementations for the swagger router
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type RoutableAPI interface {
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HandlerFor(string, string) (http.Handler, bool)
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ServeErrorFor(string) func(http.ResponseWriter, *http.Request, error)
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ConsumersFor([]string) map[string]runtime.Consumer
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ProducersFor([]string) map[string]runtime.Producer
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AuthenticatorsFor(map[string]spec.SecurityScheme) map[string]runtime.Authenticator
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Authorizer() runtime.Authorizer
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Formats() strfmt.Registry
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DefaultProduces() string
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DefaultConsumes() string
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}
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// Router represents a swagger aware router
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type Router interface {
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Lookup(method, path string) (*MatchedRoute, bool)
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OtherMethods(method, path string) []string
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}
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type defaultRouteBuilder struct {
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spec *loads.Document
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analyzer *analysis.Spec
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api RoutableAPI
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records map[string][]denco.Record
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}
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type defaultRouter struct {
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spec *loads.Document
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routers map[string]*denco.Router
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}
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func newDefaultRouteBuilder(spec *loads.Document, api RoutableAPI) *defaultRouteBuilder {
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return &defaultRouteBuilder{
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spec: spec,
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analyzer: analysis.New(spec.Spec()),
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api: api,
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records: make(map[string][]denco.Record),
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}
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}
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// DefaultRouter creates a default implemenation of the router
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func DefaultRouter(spec *loads.Document, api RoutableAPI) Router {
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builder := newDefaultRouteBuilder(spec, api)
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if spec != nil {
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for method, paths := range builder.analyzer.Operations() {
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for path, operation := range paths {
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fp := fpath.Join(spec.BasePath(), path)
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debugLog("adding route %s %s %q", method, fp, operation.ID)
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builder.AddRoute(method, fp, operation)
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}
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}
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}
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return builder.Build()
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}
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// RouteAuthenticator is an authenticator that can compose several authenticators together.
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// It also knows when it contains an authenticator that allows for anonymous pass through.
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// Contains a group of 1 or more authenticators that have a logical AND relationship
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type RouteAuthenticator struct {
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Authenticator map[string]runtime.Authenticator
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Schemes []string
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Scopes map[string][]string
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allScopes []string
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commonScopes []string
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allowAnonymous bool
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}
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func (ra *RouteAuthenticator) AllowsAnonymous() bool {
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return ra.allowAnonymous
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}
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// AllScopes returns a list of unique scopes that is the combination
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// of all the scopes in the requirements
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func (ra *RouteAuthenticator) AllScopes() []string {
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return ra.allScopes
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}
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// CommonScopes returns a list of unique scopes that are common in all the
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// scopes in the requirements
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func (ra *RouteAuthenticator) CommonScopes() []string {
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return ra.commonScopes
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}
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// Authenticate Authenticator interface implementation
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func (ra *RouteAuthenticator) Authenticate(req *http.Request, route *MatchedRoute) (bool, interface{}, error) {
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if ra.allowAnonymous {
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route.Authenticator = ra
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return true, nil, nil
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}
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// iterate in proper order
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var lastResult interface{}
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for _, scheme := range ra.Schemes {
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if authenticator, ok := ra.Authenticator[scheme]; ok {
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applies, princ, err := authenticator.Authenticate(&security.ScopedAuthRequest{
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Request: req,
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RequiredScopes: ra.Scopes[scheme],
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})
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if !applies {
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return false, nil, nil
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}
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if err != nil {
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route.Authenticator = ra
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return true, nil, err
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}
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lastResult = princ
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}
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}
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route.Authenticator = ra
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return true, lastResult, nil
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}
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func stringSliceUnion(slices ...[]string) []string {
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unique := make(map[string]struct{})
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var result []string
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for _, slice := range slices {
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for _, entry := range slice {
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if _, ok := unique[entry]; ok {
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continue
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}
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unique[entry] = struct{}{}
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result = append(result, entry)
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}
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}
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return result
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}
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func stringSliceIntersection(slices ...[]string) []string {
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unique := make(map[string]int)
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var intersection []string
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total := len(slices)
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var emptyCnt int
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for _, slice := range slices {
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if len(slice) == 0 {
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emptyCnt++
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continue
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}
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for _, entry := range slice {
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unique[entry]++
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if unique[entry] == total-emptyCnt { // this entry appeared in all the non-empty slices
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intersection = append(intersection, entry)
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}
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}
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}
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return intersection
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}
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// RouteAuthenticators represents a group of authenticators that represent a logical OR
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type RouteAuthenticators []RouteAuthenticator
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// AllowsAnonymous returns true when there is an authenticator that means optional auth
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func (ras RouteAuthenticators) AllowsAnonymous() bool {
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for _, ra := range ras {
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if ra.AllowsAnonymous() {
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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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// Authenticate method implemention so this collection can be used as authenticator
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func (ras RouteAuthenticators) Authenticate(req *http.Request, route *MatchedRoute) (bool, interface{}, error) {
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var lastError error
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var allowsAnon bool
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var anonAuth RouteAuthenticator
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for _, ra := range ras {
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if ra.AllowsAnonymous() {
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anonAuth = ra
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allowsAnon = true
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continue
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}
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applies, usr, err := ra.Authenticate(req, route)
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if !applies || err != nil || usr == nil {
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if err != nil {
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lastError = err
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}
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continue
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}
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return applies, usr, nil
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}
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if allowsAnon && lastError == nil {
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route.Authenticator = &anonAuth
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return true, nil, lastError
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}
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return lastError != nil, nil, lastError
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}
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type routeEntry struct {
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PathPattern string
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BasePath string
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Operation *spec.Operation
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Consumes []string
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Consumers map[string]runtime.Consumer
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Produces []string
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Producers map[string]runtime.Producer
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Parameters map[string]spec.Parameter
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Handler http.Handler
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Formats strfmt.Registry
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Binder *untypedRequestBinder
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Authenticators RouteAuthenticators
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Authorizer runtime.Authorizer
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}
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// MatchedRoute represents the route that was matched in this request
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type MatchedRoute struct {
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routeEntry
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Params RouteParams
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Consumer runtime.Consumer
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Producer runtime.Producer
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Authenticator *RouteAuthenticator
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}
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// HasAuth returns true when the route has a security requirement defined
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func (m *MatchedRoute) HasAuth() bool {
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return len(m.Authenticators) > 0
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}
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// NeedsAuth returns true when the request still
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// needs to perform authentication
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func (m *MatchedRoute) NeedsAuth() bool {
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return m.HasAuth() && m.Authenticator == nil
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}
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func (d *defaultRouter) Lookup(method, path string) (*MatchedRoute, bool) {
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mth := strings.ToUpper(method)
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debugLog("looking up route for %s %s", method, path)
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if Debug {
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if len(d.routers) == 0 {
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debugLog("there are no known routers")
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}
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for meth := range d.routers {
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debugLog("got a router for %s", meth)
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}
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}
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if router, ok := d.routers[mth]; ok {
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if m, rp, ok := router.Lookup(fpath.Clean(path)); ok && m != nil {
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if entry, ok := m.(*routeEntry); ok {
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debugLog("found a route for %s %s with %d parameters", method, path, len(entry.Parameters))
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var params RouteParams
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for _, p := range rp {
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v, err := pathUnescape(p.Value)
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if err != nil {
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debugLog("failed to escape %q: %v", p.Value, err)
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v = p.Value
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}
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// a workaround to handle fragment/composing parameters until they are supported in denco router
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// check if this parameter is a fragment within a path segment
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if xpos := strings.Index(entry.PathPattern, fmt.Sprintf("{%s}", p.Name)) + len(p.Name) + 2; xpos < len(entry.PathPattern) && entry.PathPattern[xpos] != '/' {
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// extract fragment parameters
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ep := strings.Split(entry.PathPattern[xpos:], "/")[0]
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pnames, pvalues := decodeCompositParams(p.Name, v, ep, nil, nil)
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for i, pname := range pnames {
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params = append(params, RouteParam{Name: pname, Value: pvalues[i]})
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}
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} else {
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// use the parameter directly
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params = append(params, RouteParam{Name: p.Name, Value: v})
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}
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}
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return &MatchedRoute{routeEntry: *entry, Params: params}, true
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}
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} else {
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debugLog("couldn't find a route by path for %s %s", method, path)
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}
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} else {
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debugLog("couldn't find a route by method for %s %s", method, path)
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}
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return nil, false
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}
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func (d *defaultRouter) OtherMethods(method, path string) []string {
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mn := strings.ToUpper(method)
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var methods []string
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for k, v := range d.routers {
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if k != mn {
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if _, _, ok := v.Lookup(fpath.Clean(path)); ok {
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methods = append(methods, k)
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continue
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}
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}
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}
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return methods
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}
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// convert swagger parameters per path segment into a denco parameter as multiple parameters per segment are not supported in denco
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var pathConverter = regexp.MustCompile(`{(.+?)}([^/]*)`)
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func decodeCompositParams(name string, value string, pattern string, names []string, values []string) ([]string, []string) {
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pleft := strings.Index(pattern, "{")
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names = append(names, name)
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if pleft < 0 {
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if strings.HasSuffix(value, pattern) {
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values = append(values, value[:len(value)-len(pattern)])
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} else {
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values = append(values, "")
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}
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} else {
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toskip := pattern[:pleft]
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pright := strings.Index(pattern, "}")
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vright := strings.Index(value, toskip)
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if vright >= 0 {
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values = append(values, value[:vright])
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} else {
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values = append(values, "")
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value = ""
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}
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return decodeCompositParams(pattern[pleft+1:pright], value[vright+len(toskip):], pattern[pright+1:], names, values)
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}
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return names, values
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}
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func (d *defaultRouteBuilder) AddRoute(method, path string, operation *spec.Operation) {
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mn := strings.ToUpper(method)
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bp := fpath.Clean(d.spec.BasePath())
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if len(bp) > 0 && bp[len(bp)-1] == '/' {
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bp = bp[:len(bp)-1]
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}
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debugLog("operation: %#v", *operation)
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if handler, ok := d.api.HandlerFor(method, strings.TrimPrefix(path, bp)); ok {
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consumes := d.analyzer.ConsumesFor(operation)
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produces := d.analyzer.ProducesFor(operation)
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parameters := d.analyzer.ParamsFor(method, strings.TrimPrefix(path, bp))
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record := denco.NewRecord(pathConverter.ReplaceAllString(path, ":$1"), &routeEntry{
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BasePath: bp,
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PathPattern: path,
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Operation: operation,
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Handler: handler,
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Consumes: consumes,
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Produces: produces,
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Consumers: d.api.ConsumersFor(normalizeOffers(consumes)),
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Producers: d.api.ProducersFor(normalizeOffers(produces)),
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Parameters: parameters,
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Formats: d.api.Formats(),
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Binder: newUntypedRequestBinder(parameters, d.spec.Spec(), d.api.Formats()),
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Authenticators: d.buildAuthenticators(operation),
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Authorizer: d.api.Authorizer(),
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})
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d.records[mn] = append(d.records[mn], record)
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}
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}
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func (d *defaultRouteBuilder) buildAuthenticators(operation *spec.Operation) RouteAuthenticators {
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requirements := d.analyzer.SecurityRequirementsFor(operation)
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var auths []RouteAuthenticator
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for _, reqs := range requirements {
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var schemes []string
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scopes := make(map[string][]string, len(reqs))
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var scopeSlices [][]string
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for _, req := range reqs {
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schemes = append(schemes, req.Name)
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scopes[req.Name] = req.Scopes
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scopeSlices = append(scopeSlices, req.Scopes)
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}
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definitions := d.analyzer.SecurityDefinitionsForRequirements(reqs)
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authenticators := d.api.AuthenticatorsFor(definitions)
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auths = append(auths, RouteAuthenticator{
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Authenticator: authenticators,
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Schemes: schemes,
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Scopes: scopes,
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allScopes: stringSliceUnion(scopeSlices...),
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commonScopes: stringSliceIntersection(scopeSlices...),
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allowAnonymous: len(reqs) == 1 && reqs[0].Name == "",
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})
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}
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return auths
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}
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func (d *defaultRouteBuilder) Build() *defaultRouter {
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routers := make(map[string]*denco.Router)
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for method, records := range d.records {
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router := denco.New()
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_ = router.Build(records)
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routers[method] = router
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}
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return &defaultRouter{
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spec: d.spec,
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routers: routers,
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}
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}
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