435 lines
13 KiB
Go
435 lines
13 KiB
Go
// Copyright 2016 ISRG. All rights reserved
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// This Source Code Form is subject to the terms of the Mozilla Public
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// License, v. 2.0. If a copy of the MPL was not distributed with this
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// file, You can obtain one at http://mozilla.org/MPL/2.0/.
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package grpc
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import (
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"fmt"
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"net"
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"time"
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"github.com/go-jose/go-jose/v4"
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"google.golang.org/grpc/codes"
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"google.golang.org/protobuf/types/known/timestamppb"
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"github.com/letsencrypt/boulder/core"
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corepb "github.com/letsencrypt/boulder/core/proto"
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"github.com/letsencrypt/boulder/identifier"
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"github.com/letsencrypt/boulder/probs"
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"github.com/letsencrypt/boulder/revocation"
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sapb "github.com/letsencrypt/boulder/sa/proto"
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vapb "github.com/letsencrypt/boulder/va/proto"
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)
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var ErrMissingParameters = CodedError(codes.FailedPrecondition, "required RPC parameter was missing")
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// This file defines functions to translate between the protobuf types and the
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// code types.
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func ProblemDetailsToPB(prob *probs.ProblemDetails) (*corepb.ProblemDetails, error) {
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if prob == nil {
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// nil problemDetails is valid
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return nil, nil
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}
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return &corepb.ProblemDetails{
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ProblemType: string(prob.Type),
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Detail: prob.Detail,
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HttpStatus: int32(prob.HTTPStatus),
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}, nil
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}
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func PBToProblemDetails(in *corepb.ProblemDetails) (*probs.ProblemDetails, error) {
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if in == nil {
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// nil problemDetails is valid
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return nil, nil
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}
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if in.ProblemType == "" || in.Detail == "" {
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return nil, ErrMissingParameters
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}
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prob := &probs.ProblemDetails{
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Type: probs.ProblemType(in.ProblemType),
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Detail: in.Detail,
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}
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if in.HttpStatus != 0 {
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prob.HTTPStatus = int(in.HttpStatus)
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}
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return prob, nil
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}
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func ChallengeToPB(challenge core.Challenge) (*corepb.Challenge, error) {
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prob, err := ProblemDetailsToPB(challenge.Error)
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if err != nil {
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return nil, err
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}
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recordAry := make([]*corepb.ValidationRecord, len(challenge.ValidationRecord))
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for i, v := range challenge.ValidationRecord {
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recordAry[i], err = ValidationRecordToPB(v)
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if err != nil {
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return nil, err
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}
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}
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var validated *timestamppb.Timestamp
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if challenge.Validated != nil {
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validated = timestamppb.New(challenge.Validated.UTC())
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if !validated.IsValid() {
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return nil, fmt.Errorf("error creating *timestamppb.Timestamp for *corepb.Challenge object")
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}
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}
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return &corepb.Challenge{
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Type: string(challenge.Type),
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Status: string(challenge.Status),
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Token: challenge.Token,
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KeyAuthorization: challenge.ProvidedKeyAuthorization,
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Error: prob,
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Validationrecords: recordAry,
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Validated: validated,
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}, nil
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}
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func PBToChallenge(in *corepb.Challenge) (challenge core.Challenge, err error) {
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if in == nil {
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return core.Challenge{}, ErrMissingParameters
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}
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if in.Type == "" || in.Status == "" || in.Token == "" {
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return core.Challenge{}, ErrMissingParameters
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}
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var recordAry []core.ValidationRecord
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if len(in.Validationrecords) > 0 {
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recordAry = make([]core.ValidationRecord, len(in.Validationrecords))
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for i, v := range in.Validationrecords {
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recordAry[i], err = PBToValidationRecord(v)
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if err != nil {
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return core.Challenge{}, err
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}
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}
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}
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prob, err := PBToProblemDetails(in.Error)
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if err != nil {
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return core.Challenge{}, err
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}
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var validated *time.Time
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if !core.IsAnyNilOrZero(in.Validated) {
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val := in.Validated.AsTime()
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validated = &val
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}
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ch := core.Challenge{
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Type: core.AcmeChallenge(in.Type),
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Status: core.AcmeStatus(in.Status),
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Token: in.Token,
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Error: prob,
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ValidationRecord: recordAry,
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Validated: validated,
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}
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if in.KeyAuthorization != "" {
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ch.ProvidedKeyAuthorization = in.KeyAuthorization
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}
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return ch, nil
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}
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func ValidationRecordToPB(record core.ValidationRecord) (*corepb.ValidationRecord, error) {
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addrs := make([][]byte, len(record.AddressesResolved))
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addrsTried := make([][]byte, len(record.AddressesTried))
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var err error
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for i, v := range record.AddressesResolved {
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addrs[i] = []byte(v)
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}
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for i, v := range record.AddressesTried {
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addrsTried[i] = []byte(v)
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}
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addrUsed, err := record.AddressUsed.MarshalText()
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if err != nil {
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return nil, err
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}
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return &corepb.ValidationRecord{
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Hostname: record.Hostname,
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Port: record.Port,
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AddressesResolved: addrs,
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AddressUsed: addrUsed,
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Url: record.URL,
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AddressesTried: addrsTried,
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ResolverAddrs: record.ResolverAddrs,
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}, nil
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}
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func PBToValidationRecord(in *corepb.ValidationRecord) (record core.ValidationRecord, err error) {
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if in == nil {
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return core.ValidationRecord{}, ErrMissingParameters
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}
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addrs := make([]net.IP, len(in.AddressesResolved))
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for i, v := range in.AddressesResolved {
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addrs[i] = net.IP(v)
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}
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addrsTried := make([]net.IP, len(in.AddressesTried))
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for i, v := range in.AddressesTried {
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addrsTried[i] = net.IP(v)
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}
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var addrUsed net.IP
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err = addrUsed.UnmarshalText(in.AddressUsed)
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if err != nil {
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return
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}
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return core.ValidationRecord{
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Hostname: in.Hostname,
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Port: in.Port,
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AddressesResolved: addrs,
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AddressUsed: addrUsed,
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URL: in.Url,
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AddressesTried: addrsTried,
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ResolverAddrs: in.ResolverAddrs,
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}, nil
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}
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func ValidationResultToPB(records []core.ValidationRecord, prob *probs.ProblemDetails) (*vapb.ValidationResult, error) {
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recordAry := make([]*corepb.ValidationRecord, len(records))
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var err error
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for i, v := range records {
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recordAry[i], err = ValidationRecordToPB(v)
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if err != nil {
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return nil, err
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}
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}
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marshalledProbs, err := ProblemDetailsToPB(prob)
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if err != nil {
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return nil, err
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}
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return &vapb.ValidationResult{
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Records: recordAry,
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Problems: marshalledProbs,
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}, nil
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}
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func pbToValidationResult(in *vapb.ValidationResult) ([]core.ValidationRecord, *probs.ProblemDetails, error) {
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if in == nil {
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return nil, nil, ErrMissingParameters
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}
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recordAry := make([]core.ValidationRecord, len(in.Records))
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var err error
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for i, v := range in.Records {
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recordAry[i], err = PBToValidationRecord(v)
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if err != nil {
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return nil, nil, err
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}
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}
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prob, err := PBToProblemDetails(in.Problems)
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if err != nil {
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return nil, nil, err
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}
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return recordAry, prob, nil
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}
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func RegistrationToPB(reg core.Registration) (*corepb.Registration, error) {
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keyBytes, err := reg.Key.MarshalJSON()
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if err != nil {
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return nil, err
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}
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ipBytes, err := reg.InitialIP.MarshalText()
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if err != nil {
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return nil, err
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}
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var contacts []string
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// Since the default value of corepb.Registration.Contact is a slice
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// we need a indicator as to if the value is actually important on
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// the other side (pb -> reg).
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contactsPresent := reg.Contact != nil
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if reg.Contact != nil {
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contacts = *reg.Contact
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}
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var createdAt *timestamppb.Timestamp
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if reg.CreatedAt != nil {
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createdAt = timestamppb.New(reg.CreatedAt.UTC())
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if !createdAt.IsValid() {
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return nil, fmt.Errorf("error creating *timestamppb.Timestamp for *corepb.Authorization object")
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}
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}
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return &corepb.Registration{
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Id: reg.ID,
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Key: keyBytes,
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Contact: contacts,
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ContactsPresent: contactsPresent,
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Agreement: reg.Agreement,
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InitialIP: ipBytes,
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CreatedAt: createdAt,
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Status: string(reg.Status),
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}, nil
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}
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func PbToRegistration(pb *corepb.Registration) (core.Registration, error) {
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var key jose.JSONWebKey
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err := key.UnmarshalJSON(pb.Key)
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if err != nil {
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return core.Registration{}, err
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}
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var initialIP net.IP
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err = initialIP.UnmarshalText(pb.InitialIP)
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if err != nil {
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return core.Registration{}, err
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}
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var createdAt *time.Time
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if !core.IsAnyNilOrZero(pb.CreatedAt) {
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c := pb.CreatedAt.AsTime()
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createdAt = &c
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}
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var contacts *[]string
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if pb.ContactsPresent {
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if len(pb.Contact) != 0 {
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contacts = &pb.Contact
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} else {
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// When gRPC creates an empty slice it is actually a nil slice. Since
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// certain things boulder uses, like encoding/json, differentiate between
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// these we need to de-nil these slices. Without this we are unable to
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// properly do registration updates as contacts would always be removed
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// as we use the difference between a nil and empty slice in ra.mergeUpdate.
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empty := []string{}
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contacts = &empty
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}
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}
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return core.Registration{
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ID: pb.Id,
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Key: &key,
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Contact: contacts,
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Agreement: pb.Agreement,
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InitialIP: initialIP,
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CreatedAt: createdAt,
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Status: core.AcmeStatus(pb.Status),
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}, nil
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}
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func AuthzToPB(authz core.Authorization) (*corepb.Authorization, error) {
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challs := make([]*corepb.Challenge, len(authz.Challenges))
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for i, c := range authz.Challenges {
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pbChall, err := ChallengeToPB(c)
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if err != nil {
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return nil, err
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}
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challs[i] = pbChall
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}
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var expires *timestamppb.Timestamp
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if authz.Expires != nil {
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expires = timestamppb.New(authz.Expires.UTC())
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if !expires.IsValid() {
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return nil, fmt.Errorf("error creating *timestamppb.Timestamp for *corepb.Authorization object")
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}
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}
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return &corepb.Authorization{
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Id: authz.ID,
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Identifier: authz.Identifier.Value,
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RegistrationID: authz.RegistrationID,
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Status: string(authz.Status),
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Expires: expires,
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Challenges: challs,
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}, nil
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}
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func PBToAuthz(pb *corepb.Authorization) (core.Authorization, error) {
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challs := make([]core.Challenge, len(pb.Challenges))
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for i, c := range pb.Challenges {
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chall, err := PBToChallenge(c)
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if err != nil {
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return core.Authorization{}, err
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}
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challs[i] = chall
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}
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var expires *time.Time
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if !core.IsAnyNilOrZero(pb.Expires) {
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c := pb.Expires.AsTime()
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expires = &c
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}
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authz := core.Authorization{
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ID: pb.Id,
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Identifier: identifier.ACMEIdentifier{Type: identifier.DNS, Value: pb.Identifier},
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RegistrationID: pb.RegistrationID,
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Status: core.AcmeStatus(pb.Status),
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Expires: expires,
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Challenges: challs,
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}
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return authz, nil
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}
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// orderValid checks that a corepb.Order is valid. In addition to the checks
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// from `newOrderValid` it ensures the order ID and the Created fields are not
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// the zero value.
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func orderValid(order *corepb.Order) bool {
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return order.Id != 0 && order.Created != nil && newOrderValid(order)
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}
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// newOrderValid checks that a corepb.Order is valid. It allows for a nil
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// `order.Id` because the order has not been assigned an ID yet when it is being
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// created initially. It allows `order.BeganProcessing` to be nil because
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// `sa.NewOrder` explicitly sets it to the default value. It allows
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// `order.Created` to be nil because the SA populates this. It also allows
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// `order.CertificateSerial` to be nil such that it can be used in places where
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// the order has not been finalized yet.
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func newOrderValid(order *corepb.Order) bool {
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return !(order.RegistrationID == 0 || order.Expires == nil || len(order.Names) == 0)
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}
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func CertToPB(cert core.Certificate) *corepb.Certificate {
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return &corepb.Certificate{
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RegistrationID: cert.RegistrationID,
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Serial: cert.Serial,
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Digest: cert.Digest,
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Der: cert.DER,
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Issued: timestamppb.New(cert.Issued),
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Expires: timestamppb.New(cert.Expires),
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}
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}
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func PBToCert(pb *corepb.Certificate) core.Certificate {
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return core.Certificate{
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RegistrationID: pb.RegistrationID,
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Serial: pb.Serial,
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Digest: pb.Digest,
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DER: pb.Der,
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Issued: pb.Issued.AsTime(),
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Expires: pb.Expires.AsTime(),
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}
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}
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func CertStatusToPB(certStatus core.CertificateStatus) *corepb.CertificateStatus {
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return &corepb.CertificateStatus{
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Serial: certStatus.Serial,
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Status: string(certStatus.Status),
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OcspLastUpdated: timestamppb.New(certStatus.OCSPLastUpdated),
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RevokedDate: timestamppb.New(certStatus.RevokedDate),
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RevokedReason: int64(certStatus.RevokedReason),
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LastExpirationNagSent: timestamppb.New(certStatus.LastExpirationNagSent),
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NotAfter: timestamppb.New(certStatus.NotAfter),
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IsExpired: certStatus.IsExpired,
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IssuerID: certStatus.IssuerNameID,
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}
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}
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func PBToCertStatus(pb *corepb.CertificateStatus) core.CertificateStatus {
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return core.CertificateStatus{
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Serial: pb.Serial,
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Status: core.OCSPStatus(pb.Status),
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OCSPLastUpdated: pb.OcspLastUpdated.AsTime(),
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RevokedDate: pb.RevokedDate.AsTime(),
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RevokedReason: revocation.Reason(pb.RevokedReason),
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LastExpirationNagSent: pb.LastExpirationNagSent.AsTime(),
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NotAfter: pb.NotAfter.AsTime(),
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IsExpired: pb.IsExpired,
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IssuerNameID: pb.IssuerID,
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}
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}
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// PBToAuthzMap converts a protobuf map of domains mapped to protobuf authorizations to a
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// golang map[string]*core.Authorization.
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func PBToAuthzMap(pb *sapb.Authorizations) (map[string]*core.Authorization, error) {
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m := make(map[string]*core.Authorization, len(pb.Authz))
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for _, v := range pb.Authz {
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authz, err := PBToAuthz(v.Authz)
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if err != nil {
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return nil, err
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}
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m[v.Domain] = &authz
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}
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return m, nil
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}
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