588 lines
20 KiB
Go
588 lines
20 KiB
Go
// Copyright (c) HashiCorp, Inc.
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// SPDX-License-Identifier: MPL-2.0
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package audit
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import (
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"context"
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"crypto/tls"
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"fmt"
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"io"
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"strings"
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"time"
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squarejwt "gopkg.in/square/go-jose.v2/jwt"
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"github.com/hashicorp/vault/helper/namespace"
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"github.com/hashicorp/vault/sdk/helper/salt"
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"github.com/hashicorp/vault/sdk/logical"
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)
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type AuditFormatWriter interface {
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// WriteRequest writes the request entry to the writer or returns an error.
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WriteRequest(io.Writer, *AuditRequestEntry) error
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// WriteResponse writes the response entry to the writer or returns an error.
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WriteResponse(io.Writer, *AuditResponseEntry) error
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// Salt returns a non-nil salt or an error.
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Salt(context.Context) (*salt.Salt, error)
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}
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// AuditFormatter implements the Formatter interface, and allows the underlying
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// marshaller to be swapped out
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type AuditFormatter struct {
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AuditFormatWriter
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}
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var _ Formatter = (*AuditFormatter)(nil)
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func (f *AuditFormatter) FormatRequest(ctx context.Context, w io.Writer, config FormatterConfig, in *logical.LogInput) error {
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if in == nil || in.Request == nil {
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return fmt.Errorf("request to request-audit a nil request")
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}
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if w == nil {
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return fmt.Errorf("writer for audit request is nil")
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}
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if f.AuditFormatWriter == nil {
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return fmt.Errorf("no format writer specified")
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}
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salt, err := f.Salt(ctx)
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if err != nil {
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return fmt.Errorf("error fetching salt: %w", err)
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}
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// Set these to the input values at first
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auth := in.Auth
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req := in.Request
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var connState *tls.ConnectionState
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if auth == nil {
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auth = new(logical.Auth)
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}
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if in.Request.Connection != nil && in.Request.Connection.ConnState != nil {
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connState = in.Request.Connection.ConnState
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}
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if !config.Raw {
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auth, err = HashAuth(salt, auth, config.HMACAccessor)
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if err != nil {
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return err
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}
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req, err = HashRequest(salt, req, config.HMACAccessor, in.NonHMACReqDataKeys)
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if err != nil {
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return err
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}
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}
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var errString string
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if in.OuterErr != nil {
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errString = in.OuterErr.Error()
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}
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ns, err := namespace.FromContext(ctx)
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if err != nil {
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return err
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}
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reqType := in.Type
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if reqType == "" {
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reqType = "request"
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}
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reqEntry := &AuditRequestEntry{
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Type: reqType,
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Error: errString,
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Auth: &AuditAuth{
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ClientToken: auth.ClientToken,
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Accessor: auth.Accessor,
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DisplayName: auth.DisplayName,
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Policies: auth.Policies,
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TokenPolicies: auth.TokenPolicies,
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IdentityPolicies: auth.IdentityPolicies,
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ExternalNamespacePolicies: auth.ExternalNamespacePolicies,
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NoDefaultPolicy: auth.NoDefaultPolicy,
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Metadata: auth.Metadata,
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EntityID: auth.EntityID,
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RemainingUses: req.ClientTokenRemainingUses,
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TokenType: auth.TokenType.String(),
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TokenTTL: int64(auth.TTL.Seconds()),
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},
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Request: &AuditRequest{
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ID: req.ID,
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ClientID: req.ClientID,
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ClientToken: req.ClientToken,
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ClientTokenAccessor: req.ClientTokenAccessor,
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Operation: req.Operation,
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MountPoint: req.MountPoint,
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MountType: req.MountType,
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MountAccessor: req.MountAccessor,
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MountRunningVersion: req.MountRunningVersion(),
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MountRunningSha256: req.MountRunningSha256(),
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MountIsExternalPlugin: req.MountIsExternalPlugin(),
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MountClass: req.MountClass(),
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Namespace: &AuditNamespace{
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ID: ns.ID,
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Path: ns.Path,
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},
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Path: req.Path,
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Data: req.Data,
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PolicyOverride: req.PolicyOverride,
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RemoteAddr: getRemoteAddr(req),
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RemotePort: getRemotePort(req),
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ReplicationCluster: req.ReplicationCluster,
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Headers: req.Headers,
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ClientCertificateSerialNumber: getClientCertificateSerialNumber(connState),
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},
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}
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if !auth.IssueTime.IsZero() {
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reqEntry.Auth.TokenIssueTime = auth.IssueTime.Format(time.RFC3339)
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}
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if auth.PolicyResults != nil {
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reqEntry.Auth.PolicyResults = &AuditPolicyResults{
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Allowed: auth.PolicyResults.Allowed,
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}
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for _, p := range auth.PolicyResults.GrantingPolicies {
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reqEntry.Auth.PolicyResults.GrantingPolicies = append(reqEntry.Auth.PolicyResults.GrantingPolicies, PolicyInfo{
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Name: p.Name,
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NamespaceId: p.NamespaceId,
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NamespacePath: p.NamespacePath,
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Type: p.Type,
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})
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}
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}
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if req.WrapInfo != nil {
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reqEntry.Request.WrapTTL = int(req.WrapInfo.TTL / time.Second)
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}
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if !config.OmitTime {
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reqEntry.Time = time.Now().UTC().Format(time.RFC3339Nano)
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}
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return f.AuditFormatWriter.WriteRequest(w, reqEntry)
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}
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func (f *AuditFormatter) FormatResponse(ctx context.Context, w io.Writer, config FormatterConfig, in *logical.LogInput) error {
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if in == nil || in.Request == nil {
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return fmt.Errorf("request to response-audit a nil request")
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}
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if w == nil {
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return fmt.Errorf("writer for audit request is nil")
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}
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if f.AuditFormatWriter == nil {
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return fmt.Errorf("no format writer specified")
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}
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salt, err := f.Salt(ctx)
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if err != nil {
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return fmt.Errorf("error fetching salt: %w", err)
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}
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// Set these to the input values at first
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auth, req, resp := in.Auth, in.Request, in.Response
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if auth == nil {
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auth = new(logical.Auth)
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}
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if resp == nil {
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resp = new(logical.Response)
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}
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var connState *tls.ConnectionState
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if in.Request.Connection != nil && in.Request.Connection.ConnState != nil {
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connState = in.Request.Connection.ConnState
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}
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elideListResponseData := config.ElideListResponses && req.Operation == logical.ListOperation
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var respData map[string]interface{}
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if config.Raw {
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// In the non-raw case, elision of list response data occurs inside HashResponse, to avoid redundant deep
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// copies and hashing of data only to elide it later. In the raw case, we need to do it here.
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if elideListResponseData && resp.Data != nil {
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// Copy the data map before making changes, but we only need to go one level deep in this case
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respData = make(map[string]interface{}, len(resp.Data))
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for k, v := range resp.Data {
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respData[k] = v
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}
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doElideListResponseData(respData)
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} else {
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respData = resp.Data
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}
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} else {
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auth, err = HashAuth(salt, auth, config.HMACAccessor)
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if err != nil {
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return err
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}
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req, err = HashRequest(salt, req, config.HMACAccessor, in.NonHMACReqDataKeys)
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if err != nil {
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return err
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}
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resp, err = HashResponse(salt, resp, config.HMACAccessor, in.NonHMACRespDataKeys, elideListResponseData)
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if err != nil {
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return err
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}
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respData = resp.Data
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}
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var errString string
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if in.OuterErr != nil {
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errString = in.OuterErr.Error()
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}
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ns, err := namespace.FromContext(ctx)
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if err != nil {
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return err
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}
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var respAuth *AuditAuth
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if resp.Auth != nil {
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respAuth = &AuditAuth{
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ClientToken: resp.Auth.ClientToken,
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Accessor: resp.Auth.Accessor,
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DisplayName: resp.Auth.DisplayName,
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Policies: resp.Auth.Policies,
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TokenPolicies: resp.Auth.TokenPolicies,
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IdentityPolicies: resp.Auth.IdentityPolicies,
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ExternalNamespacePolicies: resp.Auth.ExternalNamespacePolicies,
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NoDefaultPolicy: resp.Auth.NoDefaultPolicy,
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Metadata: resp.Auth.Metadata,
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NumUses: resp.Auth.NumUses,
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EntityID: resp.Auth.EntityID,
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TokenType: resp.Auth.TokenType.String(),
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TokenTTL: int64(resp.Auth.TTL.Seconds()),
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}
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if !resp.Auth.IssueTime.IsZero() {
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respAuth.TokenIssueTime = resp.Auth.IssueTime.Format(time.RFC3339)
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}
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}
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var respSecret *AuditSecret
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if resp.Secret != nil {
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respSecret = &AuditSecret{
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LeaseID: resp.Secret.LeaseID,
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}
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}
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var respWrapInfo *AuditResponseWrapInfo
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if resp.WrapInfo != nil {
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token := resp.WrapInfo.Token
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if jwtToken := parseVaultTokenFromJWT(token); jwtToken != nil {
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token = *jwtToken
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}
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respWrapInfo = &AuditResponseWrapInfo{
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TTL: int(resp.WrapInfo.TTL / time.Second),
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Token: token,
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Accessor: resp.WrapInfo.Accessor,
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CreationTime: resp.WrapInfo.CreationTime.UTC().Format(time.RFC3339Nano),
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CreationPath: resp.WrapInfo.CreationPath,
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WrappedAccessor: resp.WrapInfo.WrappedAccessor,
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}
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}
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respType := in.Type
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if respType == "" {
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respType = "response"
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}
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respEntry := &AuditResponseEntry{
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Type: respType,
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Error: errString,
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Auth: &AuditAuth{
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ClientToken: auth.ClientToken,
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Accessor: auth.Accessor,
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DisplayName: auth.DisplayName,
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Policies: auth.Policies,
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TokenPolicies: auth.TokenPolicies,
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IdentityPolicies: auth.IdentityPolicies,
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ExternalNamespacePolicies: auth.ExternalNamespacePolicies,
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NoDefaultPolicy: auth.NoDefaultPolicy,
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Metadata: auth.Metadata,
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RemainingUses: req.ClientTokenRemainingUses,
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EntityID: auth.EntityID,
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EntityCreated: auth.EntityCreated,
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TokenType: auth.TokenType.String(),
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TokenTTL: int64(auth.TTL.Seconds()),
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},
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Request: &AuditRequest{
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ID: req.ID,
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ClientToken: req.ClientToken,
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ClientTokenAccessor: req.ClientTokenAccessor,
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ClientID: req.ClientID,
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Operation: req.Operation,
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MountPoint: req.MountPoint,
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MountType: req.MountType,
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MountAccessor: req.MountAccessor,
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MountRunningVersion: req.MountRunningVersion(),
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MountRunningSha256: req.MountRunningSha256(),
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MountIsExternalPlugin: req.MountIsExternalPlugin(),
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MountClass: req.MountClass(),
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Namespace: &AuditNamespace{
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ID: ns.ID,
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Path: ns.Path,
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},
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Path: req.Path,
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Data: req.Data,
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PolicyOverride: req.PolicyOverride,
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RemoteAddr: getRemoteAddr(req),
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RemotePort: getRemotePort(req),
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ClientCertificateSerialNumber: getClientCertificateSerialNumber(connState),
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ReplicationCluster: req.ReplicationCluster,
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Headers: req.Headers,
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},
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Response: &AuditResponse{
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MountPoint: req.MountPoint,
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MountType: req.MountType,
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MountAccessor: req.MountAccessor,
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MountRunningVersion: req.MountRunningVersion(),
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MountRunningSha256: req.MountRunningSha256(),
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MountIsExternalPlugin: req.MountIsExternalPlugin(),
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MountClass: req.MountClass(),
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Auth: respAuth,
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Secret: respSecret,
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Data: respData,
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Warnings: resp.Warnings,
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Redirect: resp.Redirect,
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WrapInfo: respWrapInfo,
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Headers: resp.Headers,
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},
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}
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if auth.PolicyResults != nil {
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respEntry.Auth.PolicyResults = &AuditPolicyResults{
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Allowed: auth.PolicyResults.Allowed,
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}
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for _, p := range auth.PolicyResults.GrantingPolicies {
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respEntry.Auth.PolicyResults.GrantingPolicies = append(respEntry.Auth.PolicyResults.GrantingPolicies, PolicyInfo{
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Name: p.Name,
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NamespaceId: p.NamespaceId,
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NamespacePath: p.NamespacePath,
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Type: p.Type,
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})
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}
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}
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if !auth.IssueTime.IsZero() {
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respEntry.Auth.TokenIssueTime = auth.IssueTime.Format(time.RFC3339)
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}
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if req.WrapInfo != nil {
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respEntry.Request.WrapTTL = int(req.WrapInfo.TTL / time.Second)
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}
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if !config.OmitTime {
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respEntry.Time = time.Now().UTC().Format(time.RFC3339Nano)
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}
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return f.AuditFormatWriter.WriteResponse(w, respEntry)
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}
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// AuditRequestEntry is the structure of a request audit log entry in Audit.
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type AuditRequestEntry struct {
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Time string `json:"time,omitempty"`
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Type string `json:"type,omitempty"`
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Auth *AuditAuth `json:"auth,omitempty"`
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Request *AuditRequest `json:"request,omitempty"`
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Error string `json:"error,omitempty"`
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}
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// AuditResponseEntry is the structure of a response audit log entry in Audit.
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type AuditResponseEntry struct {
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Time string `json:"time,omitempty"`
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Type string `json:"type,omitempty"`
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Auth *AuditAuth `json:"auth,omitempty"`
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Request *AuditRequest `json:"request,omitempty"`
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Response *AuditResponse `json:"response,omitempty"`
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Error string `json:"error,omitempty"`
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}
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type AuditRequest struct {
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ID string `json:"id,omitempty"`
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ClientID string `json:"client_id,omitempty"`
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ReplicationCluster string `json:"replication_cluster,omitempty"`
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Operation logical.Operation `json:"operation,omitempty"`
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MountPoint string `json:"mount_point,omitempty"`
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MountType string `json:"mount_type,omitempty"`
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MountAccessor string `json:"mount_accessor,omitempty"`
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MountRunningVersion string `json:"mount_running_version,omitempty"`
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MountRunningSha256 string `json:"mount_running_sha256,omitempty"`
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MountClass string `json:"mount_class,omitempty"`
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MountIsExternalPlugin bool `json:"mount_is_external_plugin,omitempty"`
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ClientToken string `json:"client_token,omitempty"`
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ClientTokenAccessor string `json:"client_token_accessor,omitempty"`
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Namespace *AuditNamespace `json:"namespace,omitempty"`
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Path string `json:"path,omitempty"`
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Data map[string]interface{} `json:"data,omitempty"`
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PolicyOverride bool `json:"policy_override,omitempty"`
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RemoteAddr string `json:"remote_address,omitempty"`
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RemotePort int `json:"remote_port,omitempty"`
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WrapTTL int `json:"wrap_ttl,omitempty"`
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Headers map[string][]string `json:"headers,omitempty"`
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ClientCertificateSerialNumber string `json:"client_certificate_serial_number,omitempty"`
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}
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type AuditResponse struct {
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Auth *AuditAuth `json:"auth,omitempty"`
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MountPoint string `json:"mount_point,omitempty"`
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MountType string `json:"mount_type,omitempty"`
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MountAccessor string `json:"mount_accessor,omitempty"`
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MountRunningVersion string `json:"mount_running_plugin_version,omitempty"`
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MountRunningSha256 string `json:"mount_running_sha256,omitempty"`
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MountClass string `json:"mount_class,omitempty"`
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MountIsExternalPlugin bool `json:"mount_is_external_plugin,omitempty"`
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Secret *AuditSecret `json:"secret,omitempty"`
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Data map[string]interface{} `json:"data,omitempty"`
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Warnings []string `json:"warnings,omitempty"`
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Redirect string `json:"redirect,omitempty"`
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WrapInfo *AuditResponseWrapInfo `json:"wrap_info,omitempty"`
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Headers map[string][]string `json:"headers,omitempty"`
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}
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type AuditAuth struct {
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ClientToken string `json:"client_token,omitempty"`
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Accessor string `json:"accessor,omitempty"`
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DisplayName string `json:"display_name,omitempty"`
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Policies []string `json:"policies,omitempty"`
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TokenPolicies []string `json:"token_policies,omitempty"`
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IdentityPolicies []string `json:"identity_policies,omitempty"`
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ExternalNamespacePolicies map[string][]string `json:"external_namespace_policies,omitempty"`
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NoDefaultPolicy bool `json:"no_default_policy,omitempty"`
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PolicyResults *AuditPolicyResults `json:"policy_results,omitempty"`
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Metadata map[string]string `json:"metadata,omitempty"`
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NumUses int `json:"num_uses,omitempty"`
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RemainingUses int `json:"remaining_uses,omitempty"`
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EntityID string `json:"entity_id,omitempty"`
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EntityCreated bool `json:"entity_created,omitempty"`
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TokenType string `json:"token_type,omitempty"`
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TokenTTL int64 `json:"token_ttl,omitempty"`
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TokenIssueTime string `json:"token_issue_time,omitempty"`
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}
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type AuditPolicyResults struct {
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Allowed bool `json:"allowed"`
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GrantingPolicies []PolicyInfo `json:"granting_policies,omitempty"`
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}
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type PolicyInfo struct {
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Name string `json:"name,omitempty"`
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NamespaceId string `json:"namespace_id,omitempty"`
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NamespacePath string `json:"namespace_path,omitempty"`
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Type string `json:"type"`
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}
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type AuditSecret struct {
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LeaseID string `json:"lease_id,omitempty"`
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}
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type AuditResponseWrapInfo struct {
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TTL int `json:"ttl,omitempty"`
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Token string `json:"token,omitempty"`
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Accessor string `json:"accessor,omitempty"`
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CreationTime string `json:"creation_time,omitempty"`
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CreationPath string `json:"creation_path,omitempty"`
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WrappedAccessor string `json:"wrapped_accessor,omitempty"`
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}
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type AuditNamespace struct {
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ID string `json:"id,omitempty"`
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Path string `json:"path,omitempty"`
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}
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|
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// getRemoteAddr safely gets the remote address avoiding a nil pointer
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func getRemoteAddr(req *logical.Request) string {
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if req != nil && req.Connection != nil {
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return req.Connection.RemoteAddr
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}
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return ""
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}
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|
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// getRemotePort safely gets the remote port avoiding a nil pointer
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func getRemotePort(req *logical.Request) int {
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if req != nil && req.Connection != nil {
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return req.Connection.RemotePort
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}
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return 0
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}
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func getClientCertificateSerialNumber(connState *tls.ConnectionState) string {
|
|
if connState == nil || len(connState.VerifiedChains) == 0 || len(connState.VerifiedChains[0]) == 0 {
|
|
return ""
|
|
}
|
|
|
|
return connState.VerifiedChains[0][0].SerialNumber.String()
|
|
}
|
|
|
|
// parseVaultTokenFromJWT returns a string iff the token was a JWT and we could
|
|
// extract the original token ID from inside
|
|
func parseVaultTokenFromJWT(token string) *string {
|
|
if strings.Count(token, ".") != 2 {
|
|
return nil
|
|
}
|
|
|
|
parsedJWT, err := squarejwt.ParseSigned(token)
|
|
if err != nil {
|
|
return nil
|
|
}
|
|
|
|
var claims squarejwt.Claims
|
|
if err = parsedJWT.UnsafeClaimsWithoutVerification(&claims); err != nil {
|
|
return nil
|
|
}
|
|
|
|
return &claims.ID
|
|
}
|
|
|
|
// NewTemporaryFormatter creates a formatter not backed by a persistent salt
|
|
func NewTemporaryFormatter(format, prefix string) *AuditFormatter {
|
|
temporarySalt := func(ctx context.Context) (*salt.Salt, error) {
|
|
return salt.NewNonpersistentSalt(), nil
|
|
}
|
|
ret := &AuditFormatter{}
|
|
|
|
switch format {
|
|
case "jsonx":
|
|
ret.AuditFormatWriter = &JSONxFormatWriter{
|
|
Prefix: prefix,
|
|
SaltFunc: temporarySalt,
|
|
}
|
|
default:
|
|
ret.AuditFormatWriter = &JSONFormatWriter{
|
|
Prefix: prefix,
|
|
SaltFunc: temporarySalt,
|
|
}
|
|
}
|
|
return ret
|
|
}
|
|
|
|
// doElideListResponseData performs the actual elision of list operation response data, once surrounding code has
|
|
// determined it should apply to a particular request. The data map that is passed in must be a copy that is safe to
|
|
// modify in place, but need not be a full recursive deep copy, as only top-level keys are changed.
|
|
//
|
|
// See the documentation of the controlling option in FormatterConfig for more information on the purpose.
|
|
func doElideListResponseData(data map[string]interface{}) {
|
|
for k, v := range data {
|
|
if k == "keys" {
|
|
if vSlice, ok := v.([]string); ok {
|
|
data[k] = len(vSlice)
|
|
}
|
|
} else if k == "key_info" {
|
|
if vMap, ok := v.(map[string]interface{}); ok {
|
|
data[k] = len(vMap)
|
|
}
|
|
}
|
|
}
|
|
}
|