mirror of
https://github.com/smallstep/certificates.git
synced 2024-10-31 03:20:16 +00:00
267 lines
7.7 KiB
Go
267 lines
7.7 KiB
Go
package acme
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import (
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"context"
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"fmt"
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"net"
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"net/http"
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"net/url"
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"strings"
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"github.com/go-chi/chi/v5"
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"github.com/smallstep/certificates/api/render"
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"github.com/smallstep/certificates/authority"
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"github.com/smallstep/certificates/authority/provisioner"
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)
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// LinkType captures the link type.
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type LinkType int
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const (
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// NewNonceLinkType new-nonce
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NewNonceLinkType LinkType = iota
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// NewAccountLinkType new-account
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NewAccountLinkType
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// AccountLinkType account
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AccountLinkType
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// OrderLinkType order
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OrderLinkType
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// NewOrderLinkType new-order
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NewOrderLinkType
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// OrdersByAccountLinkType list of orders owned by account
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OrdersByAccountLinkType
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// FinalizeLinkType finalize order
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FinalizeLinkType
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// NewAuthzLinkType authz
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NewAuthzLinkType
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// AuthzLinkType new-authz
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AuthzLinkType
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// ChallengeLinkType challenge
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ChallengeLinkType
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// CertificateLinkType certificate
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CertificateLinkType
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// DirectoryLinkType directory
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DirectoryLinkType
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// RevokeCertLinkType revoke certificate
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RevokeCertLinkType
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// KeyChangeLinkType key rollover
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KeyChangeLinkType
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)
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func (l LinkType) String() string {
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switch l {
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case NewNonceLinkType:
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return "new-nonce"
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case NewAccountLinkType:
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return "new-account"
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case AccountLinkType:
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return "account"
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case NewOrderLinkType:
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return "new-order"
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case OrderLinkType:
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return "order"
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case NewAuthzLinkType:
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return "new-authz"
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case AuthzLinkType:
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return "authz"
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case ChallengeLinkType:
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return "challenge"
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case CertificateLinkType:
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return "certificate"
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case DirectoryLinkType:
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return "directory"
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case RevokeCertLinkType:
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return "revoke-cert"
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case KeyChangeLinkType:
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return "key-change"
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default:
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return fmt.Sprintf("unexpected LinkType '%d'", int(l))
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}
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}
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func GetUnescapedPathSuffix(typ LinkType, provisionerName string, inputs ...string) string {
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switch typ {
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case NewNonceLinkType, NewAccountLinkType, NewOrderLinkType, NewAuthzLinkType, DirectoryLinkType, KeyChangeLinkType, RevokeCertLinkType:
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return fmt.Sprintf("/%s/%s", provisionerName, typ)
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case AccountLinkType, OrderLinkType, AuthzLinkType, CertificateLinkType:
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return fmt.Sprintf("/%s/%s/%s", provisionerName, typ, inputs[0])
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case ChallengeLinkType:
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return fmt.Sprintf("/%s/%s/%s/%s", provisionerName, typ, inputs[0], inputs[1])
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case OrdersByAccountLinkType:
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return fmt.Sprintf("/%s/%s/%s/orders", provisionerName, AccountLinkType, inputs[0])
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case FinalizeLinkType:
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return fmt.Sprintf("/%s/%s/%s/finalize", provisionerName, OrderLinkType, inputs[0])
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default:
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return ""
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}
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}
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// NewLinker returns a new Directory type.
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func NewLinker(dns, prefix string) Linker {
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_, _, err := net.SplitHostPort(dns)
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if err != nil && strings.Contains(err.Error(), "too many colons in address") {
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// this is most probably an IPv6 without brackets, e.g. ::1, 2001:0db8:85a3:0000:0000:8a2e:0370:7334
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// in case a port was appended to this wrong format, we try to extract the port, then check if it's
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// still a valid IPv6: 2001:0db8:85a3:0000:0000:8a2e:0370:7334:8443 (8443 is the port). If none of
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// these cases, then the input dns is not changed.
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lastIndex := strings.LastIndex(dns, ":")
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hostPart, portPart := dns[:lastIndex], dns[lastIndex+1:]
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if ip := net.ParseIP(hostPart); ip != nil {
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dns = "[" + hostPart + "]:" + portPart
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} else if ip := net.ParseIP(dns); ip != nil {
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dns = "[" + dns + "]"
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}
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}
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return &linker{prefix: prefix, dns: dns}
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}
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// Linker interface for generating links for ACME resources.
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type Linker interface {
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GetLink(ctx context.Context, typ LinkType, inputs ...string) string
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Middleware(http.Handler) http.Handler
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LinkOrder(ctx context.Context, o *Order)
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LinkAccount(ctx context.Context, o *Account)
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LinkChallenge(ctx context.Context, o *Challenge, azID string)
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LinkAuthorization(ctx context.Context, o *Authorization)
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LinkOrdersByAccountID(ctx context.Context, orders []string)
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}
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type linkerKey struct{}
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// NewLinkerContext adds the given linker to the context.
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func NewLinkerContext(ctx context.Context, v Linker) context.Context {
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return context.WithValue(ctx, linkerKey{}, v)
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}
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// LinkerFromContext returns the current linker from the given context.
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func LinkerFromContext(ctx context.Context) (v Linker, ok bool) {
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v, ok = ctx.Value(linkerKey{}).(Linker)
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return
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}
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// MustLinkerFromContext returns the current linker from the given context. It
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// will panic if it's not in the context.
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func MustLinkerFromContext(ctx context.Context) Linker {
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var (
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v Linker
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ok bool
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)
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if v, ok = LinkerFromContext(ctx); !ok {
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panic("acme linker is not the context")
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}
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return v
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}
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type baseURLKey struct{}
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func newBaseURLContext(ctx context.Context, r *http.Request) context.Context {
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var u *url.URL
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if r.Host != "" {
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u = &url.URL{Scheme: "https", Host: r.Host}
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}
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return context.WithValue(ctx, baseURLKey{}, u)
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}
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func baseURLFromContext(ctx context.Context) *url.URL {
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if u, ok := ctx.Value(baseURLKey{}).(*url.URL); ok {
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return u
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}
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return nil
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}
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// linker generates ACME links.
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type linker struct {
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prefix string
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dns string
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}
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// Middleware gets the provisioner and current url from the request and sets
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// them in the context so we can use the linker to create ACME links.
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func (l *linker) Middleware(next http.Handler) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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// Add base url to the context.
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ctx := newBaseURLContext(r.Context(), r)
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// Add provisioner to the context.
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nameEscaped := chi.URLParam(r, "provisionerID")
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name, err := url.PathUnescape(nameEscaped)
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if err != nil {
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render.Error(w, WrapErrorISE(err, "error url unescaping provisioner name '%s'", nameEscaped))
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return
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}
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p, err := authority.MustFromContext(ctx).LoadProvisionerByName(name)
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if err != nil {
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render.Error(w, err)
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return
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}
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acmeProv, ok := p.(*provisioner.ACME)
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if !ok {
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render.Error(w, NewError(ErrorAccountDoesNotExistType, "provisioner must be of type ACME"))
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return
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}
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ctx = NewProvisionerContext(ctx, Provisioner(acmeProv))
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next.ServeHTTP(w, r.WithContext(ctx))
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})
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}
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// GetLink is a helper for GetLinkExplicit.
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func (l *linker) GetLink(ctx context.Context, typ LinkType, inputs ...string) string {
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var name string
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if p, ok := ProvisionerFromContext(ctx); ok {
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name = p.GetName()
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}
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var u url.URL
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if baseURL := baseURLFromContext(ctx); baseURL != nil {
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u = *baseURL
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}
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if u.Scheme == "" {
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u.Scheme = "https"
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}
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if u.Host == "" {
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u.Host = l.dns
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}
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u.Path = l.prefix + GetUnescapedPathSuffix(typ, name, inputs...)
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return u.String()
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}
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// LinkOrder sets the ACME links required by an ACME order.
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func (l *linker) LinkOrder(ctx context.Context, o *Order) {
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o.AuthorizationURLs = make([]string, len(o.AuthorizationIDs))
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for i, azID := range o.AuthorizationIDs {
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o.AuthorizationURLs[i] = l.GetLink(ctx, AuthzLinkType, azID)
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}
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o.FinalizeURL = l.GetLink(ctx, FinalizeLinkType, o.ID)
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if o.CertificateID != "" {
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o.CertificateURL = l.GetLink(ctx, CertificateLinkType, o.CertificateID)
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}
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}
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// LinkAccount sets the ACME links required by an ACME account.
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func (l *linker) LinkAccount(ctx context.Context, acc *Account) {
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acc.OrdersURL = l.GetLink(ctx, OrdersByAccountLinkType, acc.ID)
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}
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// LinkChallenge sets the ACME links required by an ACME challenge.
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func (l *linker) LinkChallenge(ctx context.Context, ch *Challenge, azID string) {
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ch.URL = l.GetLink(ctx, ChallengeLinkType, azID, ch.ID)
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}
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// LinkAuthorization sets the ACME links required by an ACME authorization.
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func (l *linker) LinkAuthorization(ctx context.Context, az *Authorization) {
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for _, ch := range az.Challenges {
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l.LinkChallenge(ctx, ch, az.ID)
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}
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}
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// LinkOrdersByAccountID converts each order ID to an ACME link.
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func (l *linker) LinkOrdersByAccountID(ctx context.Context, orders []string) {
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for i, id := range orders {
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orders[i] = l.GetLink(ctx, OrderLinkType, id)
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}
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}
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