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https://github.com/caddyserver/caddy.git
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General cleanup and more godocs
This commit is contained in:
parent
2d056fbe66
commit
43961b542b
39
modules.go
39
modules.go
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@ -11,15 +11,44 @@ import (
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// Module represents a Caddy module.
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type Module struct {
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Name string
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New func() (interface{}, error)
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OnLoad func(instances []interface{}, priorState interface{}) (newState interface{}, err error)
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// Name is the full name of the module. It
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// must be unique and properly namespaced.
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Name string
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// New returns a new, empty instance of
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// the module's type. The host module
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// which loads this module will likely
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// invoke methods on the returned value.
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// It must return a pointer; if not, it
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// is converted into one.
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New func() (interface{}, error)
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// OnLoad is invoked after all module
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// instances ave been loaded. It receives
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// pointers to each instance of this
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// module, and any state from a previous
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// running configuration, which may be
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// nil.
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//
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// If this module is to carry "global"
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// state between all instances through
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// reloads, you might find it helpful
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// to return it.
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// TODO: Is this really better/safer than a global variable?
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OnLoad func(instances []interface{}, priorState interface{}) (newState interface{}, err error)
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// OnUnload is called after all module
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// instances have been stopped, possibly
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// in favor of a new configuration. It
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// receives the state given by OnLoad (if
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// any).
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OnUnload func(state interface{}) error
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}
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func (m Module) String() string { return m.Name }
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// RegisterModule registers a module.
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// RegisterModule registers a module. Modules must call
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// this function in the init phase of runtime.
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func RegisterModule(mod Module) error {
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if mod.Name == "caddy" {
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return fmt.Errorf("modules cannot be named 'caddy'")
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@ -35,7 +64,7 @@ func RegisterModule(mod Module) error {
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return nil
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}
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// GetModule returns a module by name.
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// GetModule returns a module by its full name.
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func GetModule(name string) (Module, error) {
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modulesMu.Lock()
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defer modulesMu.Unlock()
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@ -3,6 +3,7 @@ package caddytls
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import (
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"encoding/json"
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"fmt"
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"time"
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"github.com/go-acme/lego/certcrypto"
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@ -18,11 +19,6 @@ func init() {
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})
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}
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// ManagerMaker TODO: WIP...
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type ManagerMaker interface {
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newManager(interactive bool) (certmagic.Manager, error)
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}
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// acmeManagerMaker makes an ACME manager
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// for managinig certificates using ACME.
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type acmeManagerMaker struct {
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@ -40,9 +36,11 @@ type acmeManagerMaker struct {
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keyType certcrypto.KeyType
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}
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func (m *acmeManagerMaker) Provision() error {
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m.setDefaults()
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func (m *acmeManagerMaker) newManager(interactive bool) (certmagic.Manager, error) {
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return nil, nil
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}
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func (m *acmeManagerMaker) Provision() error {
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// DNS providers
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if m.Challenges.DNS != nil {
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val, err := caddy2.LoadModuleInline("provider", "tls.dns", m.Challenges.DNS)
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@ -67,18 +65,71 @@ func (m *acmeManagerMaker) Provision() error {
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m.Storage = nil // allow GC to deallocate - TODO: Does this help?
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}
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m.setDefaults()
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return nil
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}
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// setDefaults indiscriminately sets all the default values in m.
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// setDefaults sets necessary values that are
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// currently empty to their default values.
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func (m *acmeManagerMaker) setDefaults() {
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m.CA = certmagic.LetsEncryptStagingCA // certmagic.Default.CA // TODO: When not testing, switch to production CA
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m.Email = certmagic.Default.Email
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m.RenewAhead = caddy2.Duration(certmagic.Default.RenewDurationBefore)
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m.keyType = certmagic.Default.KeyType
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m.storage = certmagic.Default.Storage
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if m.CA == "" {
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m.CA = certmagic.LetsEncryptStagingCA // certmagic.Default.CA // TODO: When not testing, switch to production CA
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}
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if m.Email == "" {
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m.Email = certmagic.Default.Email
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}
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if m.RenewAhead == 0 {
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m.RenewAhead = caddy2.Duration(certmagic.Default.RenewDurationBefore)
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}
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if m.keyType == "" {
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m.keyType = certmagic.Default.KeyType
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}
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if m.storage == nil {
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m.storage = certmagic.Default.Storage
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}
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}
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func (m *acmeManagerMaker) newManager(interactive bool) (certmagic.Manager, error) {
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return nil, nil
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// makeCertMagicConfig converts m into a certmagic.Config, because
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// this is a special case where the default manager is the certmagic
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// Config and not a separate manager.
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func (m *acmeManagerMaker) makeCertMagicConfig() certmagic.Config {
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storage := m.storage
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if storage == nil {
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storage = caddy2.GetStorage()
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}
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var ond *certmagic.OnDemandConfig
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if m.OnDemand != nil {
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ond = &certmagic.OnDemandConfig{
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// TODO: fill this out
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}
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}
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return certmagic.Config{
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CA: certmagic.LetsEncryptStagingCA, //ap.CA, // TODO: Restore true value
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Email: m.Email,
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Agreed: true,
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DisableHTTPChallenge: m.Challenges.HTTP.Disabled,
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DisableTLSALPNChallenge: m.Challenges.TLSALPN.Disabled,
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RenewDurationBefore: time.Duration(m.RenewAhead),
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AltHTTPPort: m.Challenges.HTTP.AlternatePort,
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AltTLSALPNPort: m.Challenges.TLSALPN.AlternatePort,
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DNSProvider: m.Challenges.dns,
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KeyType: supportedCertKeyTypes[m.KeyType],
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CertObtainTimeout: time.Duration(m.ACMETimeout),
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OnDemand: ond,
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MustStaple: m.MustStaple,
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Storage: storage,
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// TODO: listenHost
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}
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}
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// supportedCertKeyTypes is all the key types that are supported
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// for certificates that are obtained through ACME.
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var supportedCertKeyTypes = map[string]certcrypto.KeyType{
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"RSA2048": certcrypto.RSA2048,
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"RSA4096": certcrypto.RSA4096,
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"P256": certcrypto.EC256,
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"P384": certcrypto.EC384,
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}
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@ -7,13 +7,22 @@ import (
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)
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type (
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// MatchServerName matches based on SNI.
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MatchServerName []string
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// TODO: these others should be enterprise-only, probably
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MatchProtocol []string // TODO: version or protocol?
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// MatchProtocol matches based on protocol.
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MatchProtocol []string // TODO: Protocol or version?
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// MatchClientCert matches based on client certificate / client auth?
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MatchClientCert struct{} // TODO: client certificate options
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MatchRemote []string
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MatchStarlark string
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// MatchRemote matches based on the remote address of the connection.
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MatchRemote []string
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// MatchStarlark matches based on a Starlark script.
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MatchStarlark string
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)
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func init() {
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@ -39,6 +48,7 @@ func init() {
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})
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}
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// Match matches hello based on SNI.
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func (m MatchServerName) Match(hello *tls.ClientHelloInfo) bool {
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for _, name := range m {
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// TODO: support wildcards (and regex?)
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return false
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}
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// Match matches hello based on protocol version.
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func (m MatchProtocol) Match(hello *tls.ClientHelloInfo) bool {
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// TODO: not implemented
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return false
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}
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// Match matches hello based on client certificate.
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func (m MatchClientCert) Match(hello *tls.ClientHelloInfo) bool {
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// TODO: not implemented
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return false
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}
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// Match matches hello based on remote address.
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func (m MatchRemote) Match(hello *tls.ClientHelloInfo) bool {
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// TODO: not implemented
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return false
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}
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// Match matches hello based on a Starlark script.
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func (m MatchStarlark) Match(hello *tls.ClientHelloInfo) bool {
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// TODO: not implemented
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return false
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@ -5,10 +5,8 @@ import (
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"encoding/json"
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"fmt"
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"net/http"
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"time"
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"bitbucket.org/lightcodelabs/caddy2"
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"github.com/go-acme/lego/certcrypto"
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"github.com/go-acme/lego/challenge"
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"github.com/klauspost/cpuid"
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"github.com/mholt/certmagic"
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@ -30,8 +28,7 @@ type TLS struct {
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certCache *certmagic.Cache
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}
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// TODO: Finish stubbing out this two-phase setup process: prepare, then start...
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// Provision sets up the configuration for the TLS app.
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func (t *TLS) Provision() error {
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// set up the certificate cache
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// TODO: this makes a new cache every time; better to only make a new
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if err != nil {
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return fmt.Errorf("automate: managing %v: %v", names, err)
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}
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// for _, name := range names {
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// t.Manage([]string{name)
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// ap := t.getAutomationPolicyForName(name)
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// magic := certmagic.New(t.certCache, ap.makeCertMagicConfig())
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// err := magic.Manage([]string{name})
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// if err != nil {
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// return fmt.Errorf("automate: manage %s: %v", name, err)
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// }
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// }
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}
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t.Certificates = nil // allow GC to deallocate - TODO: Does this help?
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}
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func (ap AutomationPolicy) makeCertMagicConfig() certmagic.Config {
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// default manager (ACME) is a special case because of how CertMagic is designed
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// TODO: refactor certmagic so that ACME manager is not a special case by extracting
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// its config fields out of the certmagic.Config struct, or something...
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if acmeMgmt, ok := ap.management.(*acmeManagerMaker); ok {
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// default, which is management via ACME
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storage := acmeMgmt.storage
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if storage == nil {
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storage = caddy2.GetStorage()
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}
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var ond *certmagic.OnDemandConfig
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if acmeMgmt.OnDemand != nil {
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ond = &certmagic.OnDemandConfig{
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// TODO: fill this out
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}
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}
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return certmagic.Config{
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CA: certmagic.LetsEncryptStagingCA, //ap.CA, // TODO: Restore true value
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Email: acmeMgmt.Email,
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Agreed: true,
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DisableHTTPChallenge: acmeMgmt.Challenges.HTTP.Disabled,
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DisableTLSALPNChallenge: acmeMgmt.Challenges.TLSALPN.Disabled,
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RenewDurationBefore: time.Duration(acmeMgmt.RenewAhead),
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AltHTTPPort: acmeMgmt.Challenges.HTTP.AlternatePort,
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AltTLSALPNPort: acmeMgmt.Challenges.TLSALPN.AlternatePort,
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DNSProvider: acmeMgmt.Challenges.dns,
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KeyType: supportedCertKeyTypes[acmeMgmt.KeyType],
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CertObtainTimeout: time.Duration(acmeMgmt.ACMETimeout),
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OnDemand: ond,
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MustStaple: acmeMgmt.MustStaple,
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Storage: storage,
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// TODO: listenHost
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}
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return acmeMgmt.makeCertMagicConfig()
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}
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return certmagic.Config{
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@ -260,13 +221,9 @@ type OnDemandConfig struct {
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AskStarlark string `json:"ask_starlark,omitempty"`
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}
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// supportedCertKeyTypes is all the key types that are supported
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// for certificates that are obtained through ACME.
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var supportedCertKeyTypes = map[string]certcrypto.KeyType{
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"RSA2048": certcrypto.RSA2048,
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"RSA4096": certcrypto.RSA4096,
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"P256": certcrypto.EC256,
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"P384": certcrypto.EC384,
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// ManagerMaker makes a certificate manager.
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type ManagerMaker interface {
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newManager(interactive bool) (certmagic.Manager, error)
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}
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// supportedCipherSuites is the unordered map of cipher suite
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16
storage.go
16
storage.go
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}
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// StorageConverter is a type that can convert itself
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// to a valid, usable certmagic.Storage value. The
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// value might be short-lived.
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// to a valid, usable certmagic.Storage value. (The
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// value might be short-lived.) This interface allows
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// us to adapt any CertMagic storage implementation
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// into a consistent API for Caddy configuration.
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type StorageConverter interface {
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CertMagicStorage() (certmagic.Storage, error)
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}
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// TODO: Wrappers other than file_system should be enterprise-only.
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// It may seem trivial to wrap these, but the benefits are:
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// 1. We don't need to change the actual CertMagic storage implementions
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// to a structure that is operable with Caddy's config (including JSON
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// tags), and
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// 2. We don't need to rely on rely on maintainers of third-party
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// certmagic.Storage implementations. We can make any certmagic.Storage
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// work with Caddy this way.
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// fileStorage is a certmagic.Storage wrapper for certmagic.FileStorage.
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type fileStorage struct {
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Root string `json:"root"`
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