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https://github.com/caddyserver/caddy.git
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caddytls: Eval replacer on automation policy subjects (#5459)
Also renamed the field to SubjectsRaw, which can be considered a breaking change but I don't expect this to affect much.
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dd86171d67
commit
e16a886814
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@ -206,8 +206,8 @@ func (st ServerType) buildTLSApp(
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}
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// associate our new automation policy with this server block's hosts
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ap.Subjects = sblock.hostsFromKeysNotHTTP(httpPort)
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sort.Strings(ap.Subjects) // solely for deterministic test results
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ap.SubjectsRaw = sblock.hostsFromKeysNotHTTP(httpPort)
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sort.Strings(ap.SubjectsRaw) // solely for deterministic test results
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// if a combination of public and internal names were given
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// for this same server block and no issuer was specified, we
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@ -217,7 +217,7 @@ func (st ServerType) buildTLSApp(
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var ap2 *caddytls.AutomationPolicy
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if len(ap.Issuers) == 0 {
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var internal, external []string
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for _, s := range ap.Subjects {
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for _, s := range ap.SubjectsRaw {
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if !certmagic.SubjectQualifiesForCert(s) {
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return nil, warnings, fmt.Errorf("subject does not qualify for certificate: '%s'", s)
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}
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@ -235,10 +235,10 @@ func (st ServerType) buildTLSApp(
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}
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}
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if len(external) > 0 && len(internal) > 0 {
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ap.Subjects = external
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ap.SubjectsRaw = external
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apCopy := *ap
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ap2 = &apCopy
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ap2.Subjects = internal
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ap2.SubjectsRaw = internal
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ap2.IssuersRaw = []json.RawMessage{caddyconfig.JSONModuleObject(caddytls.InternalIssuer{}, "module", "internal", &warnings)}
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}
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}
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@ -339,14 +339,14 @@ func (st ServerType) buildTLSApp(
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for h := range httpsHostsSharedWithHostlessKey {
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al = append(al, h)
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if !certmagic.SubjectQualifiesForPublicCert(h) {
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internalAP.Subjects = append(internalAP.Subjects, h)
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internalAP.SubjectsRaw = append(internalAP.SubjectsRaw, h)
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}
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}
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}
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if len(al) > 0 {
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tlsApp.CertificatesRaw["automate"] = caddyconfig.JSON(al, &warnings)
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}
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if len(internalAP.Subjects) > 0 {
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if len(internalAP.SubjectsRaw) > 0 {
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if tlsApp.Automation == nil {
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tlsApp.Automation = new(caddytls.AutomationConfig)
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}
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@ -412,7 +412,7 @@ func (st ServerType) buildTLSApp(
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// for convenience)
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automationHostSet := make(map[string]struct{})
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for _, ap := range tlsApp.Automation.Policies {
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for _, s := range ap.Subjects {
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for _, s := range ap.SubjectsRaw {
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if _, ok := automationHostSet[s]; ok {
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return nil, warnings, fmt.Errorf("hostname appears in more than one automation policy, making certificate management ambiguous: %s", s)
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}
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@ -533,7 +533,7 @@ func consolidateAutomationPolicies(aps []*caddytls.AutomationPolicy) []*caddytls
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if automationPolicyIsSubset(aps[j], aps[i]) {
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return false
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}
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return len(aps[i].Subjects) > len(aps[j].Subjects)
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return len(aps[i].SubjectsRaw) > len(aps[j].SubjectsRaw)
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})
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emptyAPCount := 0
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@ -541,7 +541,7 @@ func consolidateAutomationPolicies(aps []*caddytls.AutomationPolicy) []*caddytls
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// compute the number of empty policies (disregarding subjects) - see #4128
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emptyAP := new(caddytls.AutomationPolicy)
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for i := 0; i < len(aps); i++ {
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emptyAP.Subjects = aps[i].Subjects
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emptyAP.SubjectsRaw = aps[i].SubjectsRaw
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if reflect.DeepEqual(aps[i], emptyAP) {
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emptyAPCount++
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if !automationPolicyHasAllPublicNames(aps[i]) {
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@ -583,7 +583,7 @@ outer:
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aps[i].KeyType == aps[j].KeyType &&
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aps[i].OnDemand == aps[j].OnDemand &&
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aps[i].RenewalWindowRatio == aps[j].RenewalWindowRatio {
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if len(aps[i].Subjects) > 0 && len(aps[j].Subjects) == 0 {
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if len(aps[i].SubjectsRaw) > 0 && len(aps[j].SubjectsRaw) == 0 {
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// later policy (at j) has no subjects ("catch-all"), so we can
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// remove the identical-but-more-specific policy that comes first
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// AS LONG AS it is not shadowed by another policy before it; e.g.
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@ -598,9 +598,9 @@ outer:
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}
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} else {
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// avoid repeated subjects
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for _, subj := range aps[j].Subjects {
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if !sliceContains(aps[i].Subjects, subj) {
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aps[i].Subjects = append(aps[i].Subjects, subj)
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for _, subj := range aps[j].SubjectsRaw {
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if !sliceContains(aps[i].SubjectsRaw, subj) {
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aps[i].SubjectsRaw = append(aps[i].SubjectsRaw, subj)
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}
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}
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aps = append(aps[:j], aps[j+1:]...)
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@ -616,15 +616,15 @@ outer:
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// automationPolicyIsSubset returns true if a's subjects are a subset
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// of b's subjects.
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func automationPolicyIsSubset(a, b *caddytls.AutomationPolicy) bool {
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if len(b.Subjects) == 0 {
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if len(b.SubjectsRaw) == 0 {
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return true
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}
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if len(a.Subjects) == 0 {
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if len(a.SubjectsRaw) == 0 {
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return false
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}
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for _, aSubj := range a.Subjects {
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for _, aSubj := range a.SubjectsRaw {
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var inSuperset bool
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for _, bSubj := range b.Subjects {
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for _, bSubj := range b.SubjectsRaw {
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if certmagic.MatchWildcard(aSubj, bSubj) {
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inSuperset = true
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break
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@ -662,7 +662,7 @@ func subjectQualifiesForPublicCert(ap *caddytls.AutomationPolicy, subj string) b
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}
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func automationPolicyHasAllPublicNames(ap *caddytls.AutomationPolicy) bool {
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for _, subj := range ap.Subjects {
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for _, subj := range ap.SubjectsRaw {
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if !subjectQualifiesForPublicCert(ap, subj) {
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return false
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}
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@ -47,8 +47,8 @@ func TestAutomationPolicyIsSubset(t *testing.T) {
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expect: false,
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},
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} {
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apA := &caddytls.AutomationPolicy{Subjects: test.a}
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apB := &caddytls.AutomationPolicy{Subjects: test.b}
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apA := &caddytls.AutomationPolicy{SubjectsRaw: test.a}
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apB := &caddytls.AutomationPolicy{SubjectsRaw: test.b}
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if actual := automationPolicyIsSubset(apA, apB); actual != test.expect {
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t.Errorf("Test %d: Expected %t but got %t (A: %v B: %v)", i, test.expect, actual, test.a, test.b)
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}
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@ -285,7 +285,7 @@ uniqueDomainsLoop:
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// one automation policy would be confusing and an error
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if app.tlsApp.Automation != nil {
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for _, ap := range app.tlsApp.Automation.Policies {
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for _, apHost := range ap.Subjects {
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for _, apHost := range ap.Subjects() {
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if apHost == d {
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continue uniqueDomainsLoop
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}
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@ -518,7 +518,7 @@ func (app *App) createAutomationPolicies(ctx caddy.Context, internalNames []stri
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}
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// while we're here, is this the catch-all/base policy?
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if !foundBasePolicy && len(ap.Subjects) == 0 {
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if !foundBasePolicy && len(ap.SubjectsRaw) == 0 {
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basePolicy = ap
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foundBasePolicy = true
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}
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@ -634,7 +634,7 @@ func (app *App) createAutomationPolicies(ctx caddy.Context, internalNames []stri
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// rather they just want to change the CA for the set
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// of names that would normally use the production API;
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// anyway, that gets into the weeds a bit...
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newPolicy.Subjects = internalNames
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newPolicy.SubjectsRaw = internalNames
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newPolicy.Issuers = []certmagic.Issuer{internalIssuer}
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err := app.tlsApp.AddAutomationPolicy(newPolicy)
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if err != nil {
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@ -259,8 +259,8 @@ func cmdReverseProxy(fs caddycmd.Flags) (int, error) {
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tlsApp := caddytls.TLS{
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Automation: &caddytls.AutomationConfig{
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Policies: []*caddytls.AutomationPolicy{{
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Subjects: []string{fromAddr.Host},
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IssuersRaw: []json.RawMessage{json.RawMessage(`{"module":"internal"}`)},
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SubjectsRaw: []string{fromAddr.Host},
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IssuersRaw: []json.RawMessage{json.RawMessage(`{"module":"internal"}`)},
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}},
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},
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}
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@ -85,7 +85,7 @@ type AutomationConfig struct {
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// TLS app to properly provision a new policy.
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type AutomationPolicy struct {
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// Which subjects (hostnames or IP addresses) this policy applies to.
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Subjects []string `json:"subjects,omitempty"`
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SubjectsRaw []string `json:"subjects,omitempty"`
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// The modules that may issue certificates. Default: internal if all
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// subjects do not qualify for public certificates; othewise acme and
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@ -147,12 +147,21 @@ type AutomationPolicy struct {
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Issuers []certmagic.Issuer `json:"-"`
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Managers []certmagic.Manager `json:"-"`
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magic *certmagic.Config
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storage certmagic.Storage
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subjects []string
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magic *certmagic.Config
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storage certmagic.Storage
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}
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// Provision sets up ap and builds its underlying CertMagic config.
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func (ap *AutomationPolicy) Provision(tlsApp *TLS) error {
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// replace placeholders in subjects to allow environment variables
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repl := caddy.NewReplacer()
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subjects := make([]string, len(ap.SubjectsRaw))
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for i, sub := range ap.SubjectsRaw {
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subjects[i] = repl.ReplaceAll(sub, "")
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}
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ap.subjects = subjects
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// policy-specific storage implementation
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if ap.StorageRaw != nil {
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val, err := tlsApp.ctx.LoadModule(ap, "StorageRaw")
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@ -289,6 +298,11 @@ func (ap *AutomationPolicy) Provision(tlsApp *TLS) error {
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return nil
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}
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// Subjects returns the list of subjects with all placeholders replaced.
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func (ap *AutomationPolicy) Subjects() []string {
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return ap.subjects
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}
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func (ap *AutomationPolicy) onlyInternalIssuer() bool {
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if len(ap.Issuers) != 1 {
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return false
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@ -301,10 +315,10 @@ func (ap *AutomationPolicy) onlyInternalIssuer() bool {
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// or is the "default" policy (i.e. no subjects) which is unbounded.
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func (ap *AutomationPolicy) isWildcardOrDefault() bool {
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isWildcardOrDefault := false
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if len(ap.Subjects) == 0 {
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if len(ap.subjects) == 0 {
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isWildcardOrDefault = true
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}
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for _, sub := range ap.Subjects {
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for _, sub := range ap.subjects {
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if strings.HasPrefix(sub, "*") {
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isWildcardOrDefault = true
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break
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@ -126,7 +126,12 @@ func (t *TLS) Provision(ctx caddy.Context) error {
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// special case; these will be loaded in later using our automation facilities,
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// which we want to avoid doing during provisioning
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if automateNames, ok := modIface.(*AutomateLoader); ok && automateNames != nil {
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t.automateNames = []string(*automateNames)
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repl := caddy.NewReplacer()
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subjects := make([]string, len(*automateNames))
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for i, sub := range *automateNames {
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subjects[i] = repl.ReplaceAll(sub, "")
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}
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t.automateNames = subjects
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} else {
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return fmt.Errorf("loading certificates with 'automate' requires array of strings, got: %T", modIface)
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}
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@ -231,13 +236,13 @@ func (t *TLS) Validate() error {
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var hasDefault bool
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hostSet := make(map[string]int)
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for i, ap := range t.Automation.Policies {
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if len(ap.Subjects) == 0 {
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if len(ap.subjects) == 0 {
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if hasDefault {
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return fmt.Errorf("automation policy %d is the second policy that acts as default/catch-all, but will never be used", i)
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}
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hasDefault = true
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}
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for _, h := range ap.Subjects {
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for _, h := range ap.subjects {
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if first, ok := hostSet[h]; ok {
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return fmt.Errorf("automation policy %d: cannot apply more than one automation policy to host: %s (first match in policy %d)", i, h, first)
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}
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@ -388,8 +393,8 @@ func (t *TLS) AddAutomationPolicy(ap *AutomationPolicy) error {
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// first see if existing is superset of ap for all names
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var otherIsSuperset bool
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outer:
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for _, thisSubj := range ap.Subjects {
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for _, otherSubj := range existing.Subjects {
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for _, thisSubj := range ap.subjects {
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for _, otherSubj := range existing.subjects {
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if certmagic.MatchWildcard(thisSubj, otherSubj) {
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otherIsSuperset = true
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break outer
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@ -398,7 +403,7 @@ func (t *TLS) AddAutomationPolicy(ap *AutomationPolicy) error {
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}
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// if existing AP is a superset or if it contains fewer names (i.e. is
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// more general), then new AP is more specific, so insert before it
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if otherIsSuperset || len(existing.Subjects) < len(ap.Subjects) {
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if otherIsSuperset || len(existing.SubjectsRaw) < len(ap.SubjectsRaw) {
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t.Automation.Policies = append(t.Automation.Policies[:i],
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append([]*AutomationPolicy{ap}, t.Automation.Policies[i:]...)...)
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return nil
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@ -420,10 +425,10 @@ func (t *TLS) getConfigForName(name string) *certmagic.Config {
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// public certificate or not.
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func (t *TLS) getAutomationPolicyForName(name string) *AutomationPolicy {
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for _, ap := range t.Automation.Policies {
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if len(ap.Subjects) == 0 {
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if len(ap.subjects) == 0 {
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return ap // no host filter is an automatic match
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}
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for _, h := range ap.Subjects {
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for _, h := range ap.subjects {
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if certmagic.MatchWildcard(name, h) {
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return ap
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}
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