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package command
import (
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"context"
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"fmt"
"io"
"os"
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"path"
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"strings"
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"github.com/hashicorp/vault/api"
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"github.com/mitchellh/cli"
"github.com/posener/complete"
)
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var (
_ cli . Command = ( * KVPatchCommand ) ( nil )
_ cli . CommandAutocomplete = ( * KVPatchCommand ) ( nil )
)
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type KVPatchCommand struct {
* BaseCommand
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flagCAS int
flagMethod string
flagMount string
testStdin io . Reader // for tests
flagRemoveData [ ] string
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}
func ( c * KVPatchCommand ) Synopsis ( ) string {
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return "Sets or updates data in the KV store without overwriting"
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}
func ( c * KVPatchCommand ) Help ( ) string {
helpText := `
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Usage : vault kv patch [ options ] KEY [ DATA ]
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* NOTE * : This is only supported for KV v2 engine mounts .
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Writes the data to the corresponding path in the key - value store . The data can be of
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any type .
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$ vault kv patch - mount = secret foo bar = baz
The deprecated path - like syntax can also be used , but this should be avoided ,
as the fact that it is not actually the full API path to
the secret ( secret / data / foo ) can cause confusion :
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$ vault kv patch secret / foo bar = baz
The data can also be consumed from a file on disk by prefixing with the "@"
symbol . For example :
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$ vault kv patch - mount = secret foo @ data . json
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Or it can be read from stdin using the "-" symbol :
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$ echo "abcd1234" | vault kv patch - mount = secret foo bar = -
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To perform a Check - And - Set operation , specify the - cas flag with the
appropriate version number corresponding to the key you want to perform
the CAS operation on :
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$ vault kv patch - mount = secret - cas = 1 foo bar = baz
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By default , this operation will attempt an HTTP PATCH operation . If your
policy does not allow that , it will fall back to a read / local update / write approach .
If you wish to specify which method this command should use , you may do so
with the - method flag . When - method = patch is specified , only an HTTP PATCH
operation will be tried . If it fails , the entire command will fail .
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$ vault kv patch - mount = secret - method = patch foo bar = baz
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When - method = rw is specified , only a read / local update / write approach will be tried .
This was the default behavior previous to Vault 1.9 .
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$ vault kv patch - mount = secret - method = rw foo bar = baz
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To remove data from the corresponding path in the key - value store , kv patch can be used .
$ vault kv patch - mount = secret - remove - data = bar foo
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Additional flags and more advanced use cases are detailed below .
` + c . Flags ( ) . Help ( )
return strings . TrimSpace ( helpText )
}
func ( c * KVPatchCommand ) Flags ( ) * FlagSets {
set := c . flagSet ( FlagSetHTTP | FlagSetOutputField | FlagSetOutputFormat )
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// Patch specific options
f := set . NewFlagSet ( "Common Options" )
f . IntVar ( & IntVar {
Name : "cas" ,
Target : & c . flagCAS ,
Default : 0 ,
Usage : ` Specifies to use a Check - And - Set operation . If set to 0 or not
set , the patch will be allowed . If the index is non - zero the patch will
only be allowed if the key ’ s current version matches the version
specified in the cas parameter . ` ,
} )
f . StringVar ( & StringVar {
Name : "method" ,
Target : & c . flagMethod ,
Usage : ` Specifies which method of patching to use . If set to "patch" , then
an HTTP PATCH request will be issued . If set to "rw" , then a read will be
performed , then a local update , followed by a remote update . ` ,
} )
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f . StringVar ( & StringVar {
Name : "mount" ,
Target : & c . flagMount ,
Default : "" , // no default, because the handling of the next arg is determined by whether this flag has a value
Usage : ` Specifies the path where the KV backend is mounted . If specified ,
the next argument will be interpreted as the secret path . If this flag is
not specified , the next argument will be interpreted as the combined mount
path and secret path , with / data / automatically appended between KV
v2 secrets . ` ,
} )
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f . StringSliceVar ( & StringSliceVar {
Name : "remove-data" ,
Target : & c . flagRemoveData ,
Default : [ ] string { } ,
Usage : "Key to remove from data. To specify multiple values, specify this flag multiple times." ,
} )
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return set
}
func ( c * KVPatchCommand ) AutocompleteArgs ( ) complete . Predictor {
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return c . PredictVaultFiles ( )
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}
func ( c * KVPatchCommand ) AutocompleteFlags ( ) complete . Flags {
return c . Flags ( ) . Completions ( )
}
func ( c * KVPatchCommand ) Run ( args [ ] string ) int {
f := c . Flags ( )
if err := f . Parse ( args ) ; err != nil {
c . UI . Error ( err . Error ( ) )
return 1
}
args = f . Args ( )
// Pull our fake stdin if needed
stdin := ( io . Reader ) ( os . Stdin )
if c . testStdin != nil {
stdin = c . testStdin
}
switch {
case len ( args ) < 1 :
c . UI . Error ( fmt . Sprintf ( "Not enough arguments (expected >1, got %d)" , len ( args ) ) )
return 1
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case len ( c . flagRemoveData ) == 0 && len ( args ) == 1 :
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c . UI . Error ( "Must supply data" )
return 1
}
var err error
client , err := c . Client ( )
if err != nil {
c . UI . Error ( err . Error ( ) )
return 2
}
newData , err := parseArgsData ( stdin , args [ 1 : ] )
if err != nil {
c . UI . Error ( fmt . Sprintf ( "Failed to parse K=V data: %s" , err ) )
return 1
}
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// If true, we're working with "-mount=secret foo" syntax.
// If false, we're using "secret/foo" syntax.
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mountFlagSyntax := c . flagMount != ""
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var (
mountPath string
partialPath string
v2 bool
)
// Parse the paths and grab the KV version
if mountFlagSyntax {
// In this case, this arg is the secret path (e.g. "foo").
partialPath = sanitizePath ( args [ 0 ] )
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mountPath , v2 , err = isKVv2 ( sanitizePath ( c . flagMount ) , client )
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if err != nil {
c . UI . Error ( err . Error ( ) )
return 2
}
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if v2 {
partialPath = path . Join ( mountPath , partialPath )
}
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} else {
// In this case, this arg is a path-like combination of mountPath/secretPath.
// (e.g. "secret/foo")
partialPath = sanitizePath ( args [ 0 ] )
mountPath , v2 , err = isKVv2 ( partialPath , client )
if err != nil {
c . UI . Error ( err . Error ( ) )
return 2
}
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}
if ! v2 {
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c . UI . Error ( "K/V engine mount must be version 2 for patch support" )
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return 2
}
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fullPath := addPrefixToKVPath ( partialPath , mountPath , "data" )
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if err != nil {
c . UI . Error ( err . Error ( ) )
return 2
}
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// collecting data to be removed
if newData == nil {
newData = make ( map [ string ] interface { } )
}
for _ , key := range c . flagRemoveData {
// A null in a JSON merge patch payload will remove the associated key
newData [ key ] = nil
}
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// Check the method and behave accordingly
var secret * api . Secret
var code int
switch c . flagMethod {
case "rw" :
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secret , code = c . readThenWrite ( client , fullPath , newData )
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case "patch" :
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secret , code = c . mergePatch ( client , fullPath , newData , false )
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case "" :
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secret , code = c . mergePatch ( client , fullPath , newData , true )
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default :
c . UI . Error ( fmt . Sprintf ( "Unsupported method provided to -method flag: %s" , c . flagMethod ) )
return 2
}
if code != 0 {
return code
}
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if Format ( c . UI ) == "table" {
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outputPath ( c . UI , fullPath , "Secret Path" )
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metadata := secret . Data
c . UI . Info ( getHeaderForMap ( "Metadata" , metadata ) )
return OutputData ( c . UI , metadata )
}
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return OutputSecret ( c . UI , secret )
}
func ( c * KVPatchCommand ) readThenWrite ( client * api . Client , path string , newData map [ string ] interface { } ) ( * api . Secret , int ) {
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// First, do a read.
// Note that we don't want to see curl output for the read request.
curOutputCurl := client . OutputCurlString ( )
client . SetOutputCurlString ( false )
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outputPolicy := client . OutputPolicy ( )
client . SetOutputPolicy ( false )
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secret , err := kvReadRequest ( client , path , nil )
if err != nil {
c . UI . Error ( fmt . Sprintf ( "Error doing pre-read at %s: %s" , path , err ) )
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return nil , 2
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}
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client . SetOutputCurlString ( curOutputCurl )
client . SetOutputPolicy ( outputPolicy )
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// Make sure a value already exists
if secret == nil || secret . Data == nil {
c . UI . Error ( fmt . Sprintf ( "No value found at %s" , path ) )
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return nil , 2
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}
// Verify metadata found
rawMeta , ok := secret . Data [ "metadata" ]
if ! ok || rawMeta == nil {
c . UI . Error ( fmt . Sprintf ( "No metadata found at %s; patch only works on existing data" , path ) )
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return nil , 2
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}
meta , ok := rawMeta . ( map [ string ] interface { } )
if ! ok {
c . UI . Error ( fmt . Sprintf ( "Metadata found at %s is not the expected type (JSON object)" , path ) )
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return nil , 2
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}
if meta == nil {
c . UI . Error ( fmt . Sprintf ( "No metadata found at %s; patch only works on existing data" , path ) )
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return nil , 2
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}
// Verify old data found
rawData , ok := secret . Data [ "data" ]
if ! ok || rawData == nil {
c . UI . Error ( fmt . Sprintf ( "No data found at %s; patch only works on existing data" , path ) )
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return nil , 2
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}
data , ok := rawData . ( map [ string ] interface { } )
if ! ok {
c . UI . Error ( fmt . Sprintf ( "Data found at %s is not the expected type (JSON object)" , path ) )
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return nil , 2
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}
if data == nil {
c . UI . Error ( fmt . Sprintf ( "No data found at %s; patch only works on existing data" , path ) )
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return nil , 2
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}
// Copy new data over
for k , v := range newData {
data [ k ] = v
}
secret , err = client . Logical ( ) . Write ( path , map [ string ] interface { } {
"data" : data ,
"options" : map [ string ] interface { } {
"cas" : meta [ "version" ] ,
} ,
} )
if err != nil {
c . UI . Error ( fmt . Sprintf ( "Error writing data to %s: %s" , path , err ) )
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return nil , 2
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}
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if secret == nil {
// Don't output anything unless using the "table" format
if Format ( c . UI ) == "table" {
c . UI . Info ( fmt . Sprintf ( "Success! Data written to: %s" , path ) )
}
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return nil , 0
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}
if c . flagField != "" {
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return nil , PrintRawField ( c . UI , secret , c . flagField )
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}
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return secret , 0
}
func ( c * KVPatchCommand ) mergePatch ( client * api . Client , path string , newData map [ string ] interface { } , rwFallback bool ) ( * api . Secret , int ) {
data := map [ string ] interface { } {
"data" : newData ,
"options" : map [ string ] interface { } { } ,
}
if c . flagCAS > 0 {
data [ "options" ] . ( map [ string ] interface { } ) [ "cas" ] = c . flagCAS
}
secret , err := client . Logical ( ) . JSONMergePatch ( context . Background ( ) , path , data )
if err != nil {
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// If it's a 405, that probably means the server is running a pre-1.9
// Vault version that doesn't support the HTTP PATCH method.
// Fall back to the old way of doing it if the user didn't specify a -method.
// If they did, and it was "patch", then just error.
if re , ok := err . ( * api . ResponseError ) ; ok && re . StatusCode == 405 && rwFallback {
return c . readThenWrite ( client , path , newData )
}
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// If it's a 403, that probably means they don't have the patch capability in their policy. Fall back to
// the old way of doing it if the user didn't specify a -method. If they did, and it was "patch", then just error.
if re , ok := err . ( * api . ResponseError ) ; ok && re . StatusCode == 403 && rwFallback {
c . UI . Warn ( fmt . Sprintf ( "Data was written to %s but we recommend that you add the \"patch\" capability to your ACL policy in order to use HTTP PATCH in the future." , path ) )
return c . readThenWrite ( client , path , newData )
}
c . UI . Error ( fmt . Sprintf ( "Error writing data to %s: %s" , path , err ) )
return nil , 2
}
if secret == nil {
// Don't output anything unless using the "table" format
if Format ( c . UI ) == "table" {
c . UI . Info ( fmt . Sprintf ( "Success! Data written to: %s" , path ) )
}
return nil , 0
}
if c . flagField != "" {
return nil , PrintRawField ( c . UI , secret , c . flagField )
}
return secret , 0
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}