mirror of
https://github.com/ceph/ceph-csi.git
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f84d43c6d1
Bumps [github.com/google/fscrypt](https://github.com/google/fscrypt) from 0.3.3 to 0.3.4. - [Release notes](https://github.com/google/fscrypt/releases) - [Changelog](https://github.com/google/fscrypt/blob/master/NEWS.md) - [Commits](https://github.com/google/fscrypt/compare/v0.3.3...v0.3.4) --- updated-dependencies: - dependency-name: github.com/google/fscrypt dependency-type: direct:production update-type: version-update:semver-patch ... Signed-off-by: dependabot[bot] <support@github.com>
242 lines
6.8 KiB
Go
242 lines
6.8 KiB
Go
/*
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* checks.go - Some sanity check methods for our metadata structures
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*
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* Copyright 2017 Google Inc.
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* Author: Joe Richey (joerichey@google.com)
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*
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* Licensed under the Apache License, Version 2.0 (the "License"); you may not
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* use this file except in compliance with the License. You may obtain a copy of
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* 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, WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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* License for the specific language governing permissions and limitations under
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* the License.
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*/
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package metadata
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import (
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"log"
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"math"
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"github.com/pkg/errors"
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"google.golang.org/protobuf/proto"
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"github.com/google/fscrypt/util"
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)
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var errNotInitialized = errors.New("not initialized")
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// Metadata is the interface to all of the protobuf structures that can be
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// checked for validity.
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type Metadata interface {
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CheckValidity() error
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proto.Message
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}
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// CheckValidity ensures the mode has a name and isn't empty.
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func (m EncryptionOptions_Mode) CheckValidity() error {
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if m == EncryptionOptions_default {
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return errNotInitialized
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}
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if m.String() == "" {
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return errors.Errorf("unknown %d", m)
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}
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return nil
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}
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// CheckValidity ensures the source has a name and isn't empty.
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func (s SourceType) CheckValidity() error {
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if s == SourceType_default {
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return errNotInitialized
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}
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if s.String() == "" {
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return errors.Errorf("unknown %d", s)
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}
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return nil
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}
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// MaxParallelism is the maximum allowed value for HashingCosts.Parallelism.
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const MaxParallelism = math.MaxUint8
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// CheckValidity ensures the hash costs will be accepted by Argon2.
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func (h *HashingCosts) CheckValidity() error {
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if h == nil {
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return errNotInitialized
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}
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minP := int64(1)
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p := uint8(h.Parallelism)
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if h.Parallelism < minP || h.Parallelism > MaxParallelism {
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if h.TruncationFixed || p == 0 {
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return errors.Errorf("parallelism cost %d is not in range [%d, %d]",
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h.Parallelism, minP, MaxParallelism)
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}
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// Previously we unconditionally casted costs.Parallelism to a uint8,
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// so we replicate this behavior for backwards compatibility.
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log.Printf("WARNING: Truncating parallelism cost of %d to %d", h.Parallelism, p)
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}
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minT := int64(1)
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maxT := int64(math.MaxUint32)
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if h.Time < minT || h.Time > maxT {
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return errors.Errorf("time cost %d is not in range [%d, %d]", h.Time, minT, maxT)
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}
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minM := 8 * int64(p)
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maxM := int64(math.MaxUint32)
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if h.Memory < minM || h.Memory > maxM {
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return errors.Errorf("memory cost %d KiB is not in range [%d, %d]", h.Memory, minM, maxM)
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}
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return nil
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}
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// CheckValidity ensures our buffers are the correct length.
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func (w *WrappedKeyData) CheckValidity() error {
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if w == nil {
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return errNotInitialized
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}
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if len(w.EncryptedKey) == 0 {
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return errors.Wrap(errNotInitialized, "encrypted key")
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}
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if err := util.CheckValidLength(IVLen, len(w.IV)); err != nil {
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return errors.Wrap(err, "IV")
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}
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return errors.Wrap(util.CheckValidLength(HMACLen, len(w.Hmac)), "HMAC")
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}
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// CheckValidity ensures our ProtectorData has the correct fields for its source.
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func (p *ProtectorData) CheckValidity() error {
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if p == nil {
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return errNotInitialized
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}
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if err := p.Source.CheckValidity(); err != nil {
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return errors.Wrap(err, "protector source")
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}
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// Source specific checks
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switch p.Source {
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case SourceType_pam_passphrase:
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if p.Uid < 0 {
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return errors.Errorf("UID=%d is negative", p.Uid)
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}
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fallthrough
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case SourceType_custom_passphrase:
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if err := p.Costs.CheckValidity(); err != nil {
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return errors.Wrap(err, "passphrase hashing costs")
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}
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if err := util.CheckValidLength(SaltLen, len(p.Salt)); err != nil {
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return errors.Wrap(err, "passphrase hashing salt")
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}
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}
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// Generic checks
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if err := p.WrappedKey.CheckValidity(); err != nil {
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return errors.Wrap(err, "wrapped protector key")
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}
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if err := util.CheckValidLength(ProtectorDescriptorLen, len(p.ProtectorDescriptor)); err != nil {
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return errors.Wrap(err, "protector descriptor")
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}
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err := util.CheckValidLength(InternalKeyLen, len(p.WrappedKey.EncryptedKey))
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return errors.Wrap(err, "encrypted protector key")
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}
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// CheckValidity ensures each of the options is valid.
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func (e *EncryptionOptions) CheckValidity() error {
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if e == nil {
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return errNotInitialized
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}
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if _, ok := util.Index(e.Padding, paddingArray); !ok {
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return errors.Errorf("padding of %d is invalid", e.Padding)
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}
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if err := e.Contents.CheckValidity(); err != nil {
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return errors.Wrap(err, "contents encryption mode")
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}
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if err := e.Filenames.CheckValidity(); err != nil {
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return errors.Wrap(err, "filenames encryption mode")
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}
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// If PolicyVersion is unset, treat it as 1.
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if e.PolicyVersion == 0 {
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e.PolicyVersion = 1
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}
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if e.PolicyVersion != 1 && e.PolicyVersion != 2 {
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return errors.Errorf("policy version of %d is invalid", e.PolicyVersion)
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}
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return nil
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}
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// CheckValidity ensures the fields are valid and have the correct lengths.
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func (w *WrappedPolicyKey) CheckValidity() error {
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if w == nil {
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return errNotInitialized
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}
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if err := w.WrappedKey.CheckValidity(); err != nil {
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return errors.Wrap(err, "wrapped key")
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}
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if err := util.CheckValidLength(PolicyKeyLen, len(w.WrappedKey.EncryptedKey)); err != nil {
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return errors.Wrap(err, "encrypted key")
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}
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err := util.CheckValidLength(ProtectorDescriptorLen, len(w.ProtectorDescriptor))
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return errors.Wrap(err, "wrapping protector descriptor")
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}
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// CheckValidity ensures the fields and each wrapped key are valid.
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func (p *PolicyData) CheckValidity() error {
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if p == nil {
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return errNotInitialized
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}
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// Check each wrapped key
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for i, w := range p.WrappedPolicyKeys {
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if err := w.CheckValidity(); err != nil {
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return errors.Wrapf(err, "policy key slot %d", i)
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}
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}
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if err := p.Options.CheckValidity(); err != nil {
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return errors.Wrap(err, "policy options")
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}
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var expectedLen int
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switch p.Options.PolicyVersion {
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case 1:
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expectedLen = PolicyDescriptorLenV1
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case 2:
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expectedLen = PolicyDescriptorLenV2
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default:
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return errors.Errorf("policy version of %d is invalid", p.Options.PolicyVersion)
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}
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if err := util.CheckValidLength(expectedLen, len(p.KeyDescriptor)); err != nil {
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return errors.Wrap(err, "policy key descriptor")
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}
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return nil
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}
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// CheckValidity ensures the Config has all the necessary info for its Source.
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func (c *Config) CheckValidity() error {
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// General checks
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if c == nil {
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return errNotInitialized
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}
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if err := c.Source.CheckValidity(); err != nil {
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return errors.Wrap(err, "default config source")
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}
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// Source specific checks
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switch c.Source {
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case SourceType_pam_passphrase, SourceType_custom_passphrase:
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if err := c.HashCosts.CheckValidity(); err != nil {
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return errors.Wrap(err, "config hashing costs")
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}
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}
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return errors.Wrap(c.Options.CheckValidity(), "config options")
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}
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