mirror of
https://github.com/caddyserver/caddy.git
synced 2024-12-27 14:13:48 +03:00
229 lines
5.7 KiB
Go
229 lines
5.7 KiB
Go
// Copyright 2015 Matthew Holt and The Caddy Authors
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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 httpcaddyfile
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import (
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"github.com/caddyserver/caddy/v2"
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"github.com/caddyserver/caddy/v2/caddyconfig"
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"github.com/caddyserver/caddy/v2/caddyconfig/caddyfile"
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"github.com/caddyserver/caddy/v2/modules/caddypki"
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)
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func init() {
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RegisterGlobalOption("pki", parsePKIApp)
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}
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// parsePKIApp parses the global log option. Syntax:
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//
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// pki {
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// ca [<id>] {
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// name <name>
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// root_cn <name>
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// intermediate_cn <name>
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// intermediate_lifetime <duration>
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// root {
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// cert <path>
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// key <path>
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// format <format>
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// }
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// intermediate {
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// cert <path>
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// key <path>
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// format <format>
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// }
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// }
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// }
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//
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// When the CA ID is unspecified, 'local' is assumed.
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func parsePKIApp(d *caddyfile.Dispenser, existingVal any) (any, error) {
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pki := &caddypki.PKI{CAs: make(map[string]*caddypki.CA)}
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for d.Next() {
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for nesting := d.Nesting(); d.NextBlock(nesting); {
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switch d.Val() {
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case "ca":
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pkiCa := new(caddypki.CA)
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if d.NextArg() {
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pkiCa.ID = d.Val()
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if d.NextArg() {
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return nil, d.ArgErr()
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}
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}
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if pkiCa.ID == "" {
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pkiCa.ID = caddypki.DefaultCAID
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}
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for nesting := d.Nesting(); d.NextBlock(nesting); {
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switch d.Val() {
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case "name":
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if !d.NextArg() {
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return nil, d.ArgErr()
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}
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pkiCa.Name = d.Val()
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case "root_cn":
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if !d.NextArg() {
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return nil, d.ArgErr()
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}
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pkiCa.RootCommonName = d.Val()
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case "intermediate_cn":
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if !d.NextArg() {
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return nil, d.ArgErr()
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}
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pkiCa.IntermediateCommonName = d.Val()
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case "intermediate_lifetime":
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if !d.NextArg() {
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return nil, d.ArgErr()
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}
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dur, err := caddy.ParseDuration(d.Val())
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if err != nil {
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return nil, err
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}
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pkiCa.IntermediateLifetime = caddy.Duration(dur)
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case "root":
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if pkiCa.Root == nil {
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pkiCa.Root = new(caddypki.KeyPair)
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}
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for nesting := d.Nesting(); d.NextBlock(nesting); {
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switch d.Val() {
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case "cert":
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if !d.NextArg() {
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return nil, d.ArgErr()
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}
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pkiCa.Root.Certificate = d.Val()
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case "key":
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if !d.NextArg() {
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return nil, d.ArgErr()
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}
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pkiCa.Root.PrivateKey = d.Val()
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case "format":
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if !d.NextArg() {
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return nil, d.ArgErr()
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}
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pkiCa.Root.Format = d.Val()
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default:
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return nil, d.Errf("unrecognized pki ca root option '%s'", d.Val())
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}
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}
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case "intermediate":
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if pkiCa.Intermediate == nil {
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pkiCa.Intermediate = new(caddypki.KeyPair)
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}
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for nesting := d.Nesting(); d.NextBlock(nesting); {
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switch d.Val() {
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case "cert":
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if !d.NextArg() {
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return nil, d.ArgErr()
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}
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pkiCa.Intermediate.Certificate = d.Val()
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case "key":
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if !d.NextArg() {
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return nil, d.ArgErr()
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}
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pkiCa.Intermediate.PrivateKey = d.Val()
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case "format":
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if !d.NextArg() {
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return nil, d.ArgErr()
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}
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pkiCa.Intermediate.Format = d.Val()
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default:
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return nil, d.Errf("unrecognized pki ca intermediate option '%s'", d.Val())
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}
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}
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default:
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return nil, d.Errf("unrecognized pki ca option '%s'", d.Val())
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}
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}
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pki.CAs[pkiCa.ID] = pkiCa
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default:
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return nil, d.Errf("unrecognized pki option '%s'", d.Val())
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}
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}
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}
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return pki, nil
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}
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func (st ServerType) buildPKIApp(
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pairings []sbAddrAssociation,
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options map[string]any,
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warnings []caddyconfig.Warning,
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) (*caddypki.PKI, []caddyconfig.Warning, error) {
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skipInstallTrust := false
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if _, ok := options["skip_install_trust"]; ok {
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skipInstallTrust = true
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}
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falseBool := false
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// Load the PKI app configured via global options
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var pkiApp *caddypki.PKI
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unwrappedPki, ok := options["pki"].(*caddypki.PKI)
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if ok {
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pkiApp = unwrappedPki
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} else {
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pkiApp = &caddypki.PKI{CAs: make(map[string]*caddypki.CA)}
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}
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for _, ca := range pkiApp.CAs {
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if skipInstallTrust {
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ca.InstallTrust = &falseBool
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}
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pkiApp.CAs[ca.ID] = ca
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}
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// Add in the CAs configured via directives
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for _, p := range pairings {
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for _, sblock := range p.serverBlocks {
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// find all the CAs that were defined and add them to the app config
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// i.e. from any "acme_server" directives
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for _, caCfgValue := range sblock.pile["pki.ca"] {
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ca := caCfgValue.Value.(*caddypki.CA)
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if skipInstallTrust {
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ca.InstallTrust = &falseBool
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}
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// the CA might already exist from global options, so
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// don't overwrite it in that case
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if _, ok := pkiApp.CAs[ca.ID]; !ok {
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pkiApp.CAs[ca.ID] = ca
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}
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}
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}
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}
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// if there was no CAs defined in any of the servers,
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// and we were requested to not install trust, then
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// add one for the default/local CA to do so
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if len(pkiApp.CAs) == 0 && skipInstallTrust {
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ca := new(caddypki.CA)
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ca.ID = caddypki.DefaultCAID
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ca.InstallTrust = &falseBool
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pkiApp.CAs[ca.ID] = ca
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}
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return pkiApp, warnings, nil
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}
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