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/ *
* Minio Cloud Storage , ( C ) 2016 Minio , Inc .
*
* Licensed under the Apache License , Version 2.0 ( the "License" ) ;
* you may not use this file except in compliance with the License .
* You may obtain a copy of the License at
*
* http : //www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing , software
* distributed under the License is distributed on an "AS IS" BASIS ,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND , either express or implied .
* See the License for the specific language governing permissions and
* limitations under the License .
* /
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package cmd
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import (
"bytes"
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"encoding/xml"
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"fmt"
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"io"
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"io/ioutil"
"net/http"
"net/http/httptest"
"net/url"
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"strconv"
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"sync"
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"testing"
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humanize "github.com/dustin/go-humanize"
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)
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// Type to capture different modifications to API request to simulate failure cases.
type Fault int
const (
None Fault = iota
MissingContentLength
TooBigObject
TooBigDecodedLength
BadSignature
BadMD5
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MissingUploadID
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)
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// Wrapper for calling HeadObject API handler tests for both XL multiple disks and FS single drive setup.
func TestAPIHeadObjectHandler ( t * testing . T ) {
ExecObjectLayerAPITest ( t , testAPIHeadObjectHandler , [ ] string { "HeadObject" } )
}
func testAPIHeadObjectHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
credentials credential , t * testing . T ) {
objectName := "test-object"
// set of byte data for PutObject.
// object has to be created before running tests for HeadObject.
// this is required even to assert the HeadObject data,
// since dataInserted === dataFetched back is a primary criteria for any object storage this assertion is critical.
bytesData := [ ] struct {
byteData [ ] byte
} {
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{ generateBytesData ( 6 * humanize . MiByte ) } ,
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}
// set of inputs for uploading the objects before tests for downloading is done.
putObjectInputs := [ ] struct {
bucketName string
objectName string
contentLength int64
textData [ ] byte
metaData map [ string ] string
} {
{ bucketName , objectName , int64 ( len ( bytesData [ 0 ] . byteData ) ) , bytesData [ 0 ] . byteData , make ( map [ string ] string ) } ,
}
sha256sum := ""
// iterate through the above set of inputs and upload the object.
for i , input := range putObjectInputs {
// uploading the object.
_ , err := obj . PutObject ( input . bucketName , input . objectName , input . contentLength , bytes . NewBuffer ( input . textData ) , input . metaData , sha256sum )
// if object upload fails stop the test.
if err != nil {
t . Fatalf ( "Put Object case %d: Error uploading object: <ERROR> %v" , i + 1 , err )
}
}
// test cases with inputs and expected result for HeadObject.
testCases := [ ] struct {
bucketName string
objectName string
accessKey string
secretKey string
// expected output.
expectedRespStatus int // expected response status body.
} {
// Test case - 1.
// Fetching stat info of object and validating it.
{
bucketName : bucketName ,
objectName : objectName ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusOK ,
} ,
// Test case - 2.
// Case with non-existent object name.
{
bucketName : bucketName ,
objectName : "abcd" ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusNotFound ,
} ,
// Test case - 3.
// Test case to induce a signature mismatch.
// Using invalid accessID.
{
bucketName : bucketName ,
objectName : objectName ,
accessKey : "Invalid-AccessID" ,
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secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusForbidden ,
} ,
}
// Iterating over the cases, fetching the object validating the response.
for i , testCase := range testCases {
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
rec := httptest . NewRecorder ( )
// construct HTTP request for Get Object end point.
req , err := newTestSignedRequestV4 ( "HEAD" , getHeadObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
0 , nil , testCase . accessKey , testCase . secretKey )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed to create HTTP request for Head Object: <ERROR> %v" , i + 1 , instanceType , err )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler,`func (api objectAPIHandlers) GetObjectHandler` handles the request.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != testCase . expectedRespStatus {
t . Fatalf ( "Case %d: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , testCase . expectedRespStatus , rec . Code )
}
// Verify response of the V2 signed HTTP request.
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
recV2 := httptest . NewRecorder ( )
// construct HTTP request for Head Object endpoint.
reqV2 , err := newTestSignedRequestV2 ( "HEAD" , getHeadObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
0 , nil , testCase . accessKey , testCase . secretKey )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed to create HTTP request for Head Object: <ERROR> %v" , i + 1 , instanceType , err )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler.
apiRouter . ServeHTTP ( recV2 , reqV2 )
if recV2 . Code != testCase . expectedRespStatus {
t . Errorf ( "Test %d: %s: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , instanceType , testCase . expectedRespStatus , recV2 . Code )
}
}
// Test for Anonymous/unsigned http request.
anonReq , err := newTestRequest ( "HEAD" , getHeadObjectURL ( "" , bucketName , objectName ) , 0 , nil )
if err != nil {
t . Fatalf ( "Minio %s: Failed to create an anonymous request for %s/%s: <ERROR> %v" ,
instanceType , bucketName , objectName , err )
}
// ExecObjectLayerAPIAnonTest - Calls the HTTP API handler using the anonymous request, validates the ErrAccessDeniedResponse,
// sets the bucket policy using the policy statement generated from `getWriteOnlyObjectStatement` so that the
// unsigned request goes through and its validated again.
ExecObjectLayerAPIAnonTest ( t , "TestAPIHeadObjectHandler" , bucketName , objectName , instanceType , apiRouter , anonReq , getReadOnlyObjectStatement )
// HTTP request for testing when `objectLayer` is set to `nil`.
// There is no need to use an existing bucket and valid input for creating the request
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
nilReq , err := newTestSignedRequestV4 ( "HEAD" , getGetObjectURL ( "" , nilBucket , nilObject ) ,
0 , nil , "" , "" )
if err != nil {
t . Errorf ( "Minio %s: Failed to create HTTP request for testing the response when object Layer is set to `nil`." , instanceType )
}
// execute the object layer set to `nil` test.
// `ExecObjectLayerAPINilTest` manages the operation.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
}
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// Wrapper for calling GetObject API handler tests for both XL multiple disks and FS single drive setup.
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func TestAPIGetObjectHandler ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPIGetObjectHandler , [ ] string { "GetObject" } )
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}
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func testAPIGetObjectHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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objectName := "test-object"
// set of byte data for PutObject.
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// object has to be created before running tests for GetObject.
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// this is required even to assert the GetObject data,
// since dataInserted === dataFetched back is a primary criteria for any object storage this assertion is critical.
bytesData := [ ] struct {
byteData [ ] byte
} {
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{ generateBytesData ( 6 * humanize . MiByte ) } ,
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}
// set of inputs for uploading the objects before tests for downloading is done.
putObjectInputs := [ ] struct {
bucketName string
objectName string
contentLength int64
textData [ ] byte
metaData map [ string ] string
} {
// case - 1.
{ bucketName , objectName , int64 ( len ( bytesData [ 0 ] . byteData ) ) , bytesData [ 0 ] . byteData , make ( map [ string ] string ) } ,
}
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sha256sum := ""
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// iterate through the above set of inputs and upload the object.
for i , input := range putObjectInputs {
// uploading the object.
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_ , err := obj . PutObject ( input . bucketName , input . objectName , input . contentLength , bytes . NewBuffer ( input . textData ) , input . metaData , sha256sum )
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// if object upload fails stop the test.
if err != nil {
t . Fatalf ( "Put Object case %d: Error uploading object: <ERROR> %v" , i + 1 , err )
}
}
// test cases with inputs and expected result for GetObject.
testCases := [ ] struct {
bucketName string
objectName string
byteRange string // range of bytes to be fetched from GetObject.
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accessKey string
secretKey string
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// expected output.
expectedContent [ ] byte // expected response body.
expectedRespStatus int // expected response status body.
} {
// Test case - 1.
// Fetching the entire object and validating its contents.
{
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bucketName : bucketName ,
objectName : objectName ,
byteRange : "" ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : bytesData [ 0 ] . byteData ,
expectedRespStatus : http . StatusOK ,
} ,
// Test case - 2.
// Case with non-existent object name.
{
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bucketName : bucketName ,
objectName : "abcd" ,
byteRange : "" ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( ErrNoSuchKey ) , getGetObjectURL ( "" , bucketName , "abcd" ) ) ) ,
expectedRespStatus : http . StatusNotFound ,
} ,
// Test case - 3.
// Requesting from range 10-100.
{
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bucketName : bucketName ,
objectName : objectName ,
byteRange : "bytes=10-100" ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : bytesData [ 0 ] . byteData [ 10 : 101 ] ,
expectedRespStatus : http . StatusPartialContent ,
} ,
// Test case - 4.
// Test case with invalid range.
{
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bucketName : bucketName ,
objectName : objectName ,
byteRange : "bytes=-0" ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( ErrInvalidRange ) , getGetObjectURL ( "" , bucketName , objectName ) ) ) ,
expectedRespStatus : http . StatusRequestedRangeNotSatisfiable ,
} ,
// Test case - 5.
// Test case with byte range exceeding the object size.
// Expected to read till end of the object.
{
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bucketName : bucketName ,
objectName : objectName ,
byteRange : "bytes=10-1000000000000000" ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : bytesData [ 0 ] . byteData [ 10 : ] ,
expectedRespStatus : http . StatusPartialContent ,
} ,
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// Test case - 6.
// Test case to induce a signature mismatch.
// Using invalid accessID.
{
bucketName : bucketName ,
objectName : objectName ,
byteRange : "" ,
accessKey : "Invalid-AccessID" ,
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secretKey : credentials . SecretKey ,
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expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( ErrInvalidAccessKeyID ) , getGetObjectURL ( "" , bucketName , objectName ) ) ) ,
expectedRespStatus : http . StatusForbidden ,
} ,
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// Test case - 7.
// Case with bad components in object name.
{
bucketName : bucketName ,
objectName : "../../etc" ,
byteRange : "" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( ErrInvalidObjectName ) ,
getGetObjectURL ( "" , bucketName , "../../etc" ) ) ) ,
expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 8.
// Case with strange components but returning error as not found.
{
bucketName : bucketName ,
objectName : ". ./. ./etc" ,
byteRange : "" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( ErrNoSuchKey ) ,
"/" + bucketName + "/" + ". ./. ./etc" ) ) ,
expectedRespStatus : http . StatusNotFound ,
} ,
// Test case - 9.
// Case with bad components in object name.
{
bucketName : bucketName ,
objectName : ". ./../etc" ,
byteRange : "" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( ErrInvalidObjectName ) ,
"/" + bucketName + "/" + ". ./../etc" ) ) ,
expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 10.
// Case with proper components
{
bucketName : bucketName ,
objectName : "etc/path/proper/.../etc" ,
byteRange : "" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( ErrNoSuchKey ) ,
getGetObjectURL ( "" , bucketName , "etc/path/proper/.../etc" ) ) ) ,
expectedRespStatus : http . StatusNotFound ,
} ,
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}
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// Iterating over the cases, fetching the object validating the response.
for i , testCase := range testCases {
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
rec := httptest . NewRecorder ( )
// construct HTTP request for Get Object end point.
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req , err := newTestSignedRequestV4 ( "GET" , getGetObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
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0 , nil , testCase . accessKey , testCase . secretKey )
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if err != nil {
t . Fatalf ( "Test %d: Failed to create HTTP request for Get Object: <ERROR> %v" , i + 1 , err )
}
if testCase . byteRange != "" {
req . Header . Add ( "Range" , testCase . byteRange )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler,`func (api objectAPIHandlers) GetObjectHandler` handles the request.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != testCase . expectedRespStatus {
t . Fatalf ( "Case %d: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , testCase . expectedRespStatus , rec . Code )
}
// read the response body.
actualContent , err := ioutil . ReadAll ( rec . Body )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed parsing response body: <ERROR> %v" , i + 1 , instanceType , err )
}
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// Verify whether the bucket obtained object is same as the one created.
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if ! bytes . Equal ( testCase . expectedContent , actualContent ) {
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t . Errorf ( "Test %d: %s: Object content differs from expected value %s, got %s" , i + 1 , instanceType , testCase . expectedContent , string ( actualContent ) )
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}
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// Verify response of the V2 signed HTTP request.
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
recV2 := httptest . NewRecorder ( )
// construct HTTP request for GET Object endpoint.
reqV2 , err := newTestSignedRequestV2 ( "GET" , getGetObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
0 , nil , testCase . accessKey , testCase . secretKey )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed to create HTTP request for GetObject: <ERROR> %v" , i + 1 , instanceType , err )
}
if testCase . byteRange != "" {
reqV2 . Header . Add ( "Range" , testCase . byteRange )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler.
apiRouter . ServeHTTP ( recV2 , reqV2 )
if recV2 . Code != testCase . expectedRespStatus {
t . Errorf ( "Test %d: %s: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , instanceType , testCase . expectedRespStatus , recV2 . Code )
}
// read the response body.
actualContent , err = ioutil . ReadAll ( recV2 . Body )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed parsing response body: <ERROR> %v" , i + 1 , instanceType , err )
}
// Verify whether the bucket obtained object is same as the one created.
if ! bytes . Equal ( testCase . expectedContent , actualContent ) {
t . Errorf ( "Test %d: %s: Object content differs from expected value." , i + 1 , instanceType )
}
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}
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// Test for Anonymous/unsigned http request.
anonReq , err := newTestRequest ( "GET" , getGetObjectURL ( "" , bucketName , objectName ) , 0 , nil )
if err != nil {
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t . Fatalf ( "Minio %s: Failed to create an anonymous request for %s/%s: <ERROR> %v" ,
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instanceType , bucketName , objectName , err )
}
// ExecObjectLayerAPIAnonTest - Calls the HTTP API handler using the anonymous request, validates the ErrAccessDeniedResponse,
// sets the bucket policy using the policy statement generated from `getWriteOnlyObjectStatement` so that the
// unsigned request goes through and its validated again.
ExecObjectLayerAPIAnonTest ( t , "TestAPIGetObjectHandler" , bucketName , objectName , instanceType , apiRouter , anonReq , getReadOnlyObjectStatement )
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// HTTP request for testing when `objectLayer` is set to `nil`.
// There is no need to use an existing bucket and valid input for creating the request
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
nilReq , err := newTestSignedRequestV4 ( "GET" , getGetObjectURL ( "" , nilBucket , nilObject ) ,
0 , nil , "" , "" )
if err != nil {
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t . Errorf ( "Minio %s: Failed to create HTTP request for testing the response when object Layer is set to `nil`." , instanceType )
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}
// execute the object layer set to `nil` test.
// `ExecObjectLayerAPINilTest` manages the operation.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
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}
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// Wrapper for calling PutObject API handler tests using streaming signature v4 for both XL multiple disks and FS single drive setup.
func TestAPIPutObjectStreamSigV4Handler ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPIPutObjectStreamSigV4Handler , [ ] string { "PutObject" } )
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}
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func testAPIPutObjectStreamSigV4Handler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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objectName := "test-object"
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bytesDataLen := 65 * humanize . KiByte
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bytesData := bytes . Repeat ( [ ] byte { 'a' } , bytesDataLen )
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oneKData := bytes . Repeat ( [ ] byte ( "a" ) , 1 * humanize . KiByte )
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err := initEventNotifier ( obj )
if err != nil {
t . Fatalf ( "[%s] - Failed to initialize event notifiers <ERROR> %v" , instanceType , err )
}
type streamFault int
const (
None streamFault = iota
malformedEncoding
unexpectedEOF
signatureMismatch
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chunkDateMismatch
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tooBigDecodedLength
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)
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// byte data for PutObject.
// test cases with inputs and expected result for GetObject.
testCases := [ ] struct {
bucketName string
objectName string
data [ ] byte
dataLen int
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chunkSize int64
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// expected output.
expectedContent [ ] byte // expected response body.
expectedRespStatus int // expected response status body.
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// Access keys
accessKey string
secretKey string
shouldPass bool
removeAuthHeader bool
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fault streamFault
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// Custom content encoding.
contentEncoding string
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} {
// Test case - 1.
// Fetching the entire object and validating its contents.
{
bucketName : bucketName ,
objectName : objectName ,
data : bytesData ,
dataLen : len ( bytesData ) ,
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chunkSize : 64 * humanize . KiByte ,
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expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusOK ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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shouldPass : true ,
} ,
// Test case - 2
// Small chunk size.
{
bucketName : bucketName ,
objectName : objectName ,
data : bytesData ,
dataLen : len ( bytesData ) ,
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chunkSize : 1 * humanize . KiByte ,
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expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusOK ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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shouldPass : true ,
} ,
// Test case - 3
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// Empty data
{
bucketName : bucketName ,
objectName : objectName ,
data : [ ] byte { } ,
dataLen : 0 ,
chunkSize : 64 * humanize . KiByte ,
expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusOK ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
shouldPass : true ,
} ,
// Test case - 4
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// Invalid access key id.
{
bucketName : bucketName ,
objectName : objectName ,
data : bytesData ,
dataLen : len ( bytesData ) ,
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chunkSize : 64 * humanize . KiByte ,
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expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusForbidden ,
accessKey : "" ,
secretKey : "" ,
shouldPass : false ,
} ,
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// Test case - 5
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// Wrong auth header returns as bad request.
{
bucketName : bucketName ,
objectName : objectName ,
data : bytesData ,
dataLen : len ( bytesData ) ,
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chunkSize : 64 * humanize . KiByte ,
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expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusBadRequest ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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shouldPass : false ,
removeAuthHeader : true ,
} ,
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// Test case - 6
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// Large chunk size.. also passes.
{
bucketName : bucketName ,
objectName : objectName ,
data : bytesData ,
dataLen : len ( bytesData ) ,
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chunkSize : 100 * humanize . KiByte ,
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expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusOK ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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shouldPass : true ,
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} ,
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// Test case - 7
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// Chunk with malformed encoding.
{
bucketName : bucketName ,
objectName : objectName ,
data : oneKData ,
dataLen : 1024 ,
chunkSize : 1024 ,
expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusInternalServerError ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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shouldPass : false ,
fault : malformedEncoding ,
} ,
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// Test case - 8
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// Chunk with shorter than advertised chunk data.
{
bucketName : bucketName ,
objectName : objectName ,
data : oneKData ,
dataLen : 1024 ,
chunkSize : 1024 ,
expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusBadRequest ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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shouldPass : false ,
fault : unexpectedEOF ,
} ,
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// Test case - 9
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// Chunk with first chunk data byte tampered.
{
bucketName : bucketName ,
objectName : objectName ,
data : oneKData ,
dataLen : 1024 ,
chunkSize : 1024 ,
expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusForbidden ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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shouldPass : false ,
fault : signatureMismatch ,
} ,
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// Test case - 10
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// Different date (timestamps) used in seed signature calculation
// and chunks signature calculation.
{
bucketName : bucketName ,
objectName : objectName ,
data : oneKData ,
dataLen : 1024 ,
chunkSize : 1024 ,
expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusForbidden ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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shouldPass : false ,
fault : chunkDateMismatch ,
} ,
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// Test case - 11
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// Set x-amz-decoded-content-length to a value too big to hold in int64.
{
bucketName : bucketName ,
objectName : objectName ,
data : oneKData ,
dataLen : 1024 ,
chunkSize : 1024 ,
expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusInternalServerError ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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shouldPass : false ,
fault : tooBigDecodedLength ,
} ,
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// Test case - 12
// Set custom content encoding should succeed and save the encoding properly.
{
bucketName : bucketName ,
objectName : objectName ,
data : bytesData ,
dataLen : len ( bytesData ) ,
chunkSize : 100 * humanize . KiByte ,
expectedContent : [ ] byte { } ,
expectedRespStatus : http . StatusOK ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
shouldPass : true ,
contentEncoding : "aws-chunked,gzip" ,
} ,
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}
// Iterating over the cases, fetching the object validating the response.
for i , testCase := range testCases {
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
rec := httptest . NewRecorder ( )
// construct HTTP request for Put Object end point.
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var req * http . Request
if testCase . fault == chunkDateMismatch {
req , err = newTestStreamingSignedBadChunkDateRequest ( "PUT" ,
getPutObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
int64 ( testCase . dataLen ) , testCase . chunkSize , bytes . NewReader ( testCase . data ) ,
testCase . accessKey , testCase . secretKey )
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} else if testCase . contentEncoding == "" {
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req , err = newTestStreamingSignedRequest ( "PUT" ,
getPutObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
int64 ( testCase . dataLen ) , testCase . chunkSize , bytes . NewReader ( testCase . data ) ,
testCase . accessKey , testCase . secretKey )
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} else if testCase . contentEncoding != "" {
req , err = newTestStreamingSignedCustomEncodingRequest ( "PUT" ,
getPutObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
int64 ( testCase . dataLen ) , testCase . chunkSize , bytes . NewReader ( testCase . data ) ,
testCase . accessKey , testCase . secretKey , testCase . contentEncoding )
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}
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if err != nil {
t . Fatalf ( "Test %d: Failed to create HTTP request for Put Object: <ERROR> %v" , i + 1 , err )
}
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// Removes auth header if test case requires it.
if testCase . removeAuthHeader {
req . Header . Del ( "Authorization" )
}
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switch testCase . fault {
case malformedEncoding :
req , err = malformChunkSizeSigV4 ( req , testCase . chunkSize - 1 )
case signatureMismatch :
req , err = malformDataSigV4 ( req , 'z' )
case unexpectedEOF :
req , err = truncateChunkByHalfSigv4 ( req )
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case tooBigDecodedLength :
// Set decoded length to a large value out of int64 range to simulate parse failure.
req . Header . Set ( "x-amz-decoded-content-length" , "9999999999999999999999" )
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}
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if err != nil {
t . Fatalf ( "Error injecting faults into the request: <ERROR> %v." , err )
}
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// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler,`func (api objectAPIHandlers) GetObjectHandler` handles the request.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != testCase . expectedRespStatus {
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t . Errorf ( "Test %d %s: Expected the response status to be `%d`, but instead found `%d`" ,
i + 1 , instanceType , testCase . expectedRespStatus , rec . Code )
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}
// read the response body.
actualContent , err := ioutil . ReadAll ( rec . Body )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed parsing response body: <ERROR> %v" , i + 1 , instanceType , err )
}
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if testCase . shouldPass {
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// Verify whether the bucket obtained object is same as the one created.
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if ! bytes . Equal ( testCase . expectedContent , actualContent ) {
t . Errorf ( "Test %d: %s: Object content differs from expected value.: %s" , i + 1 , instanceType , string ( actualContent ) )
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continue
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}
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objInfo , err := obj . GetObjectInfo ( testCase . bucketName , testCase . objectName )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed to fetch the copied object: <ERROR> %s" , i + 1 , instanceType , err )
}
if objInfo . ContentEncoding == streamingContentEncoding {
t . Fatalf ( "Test %d: %s: ContentEncoding is set to \"aws-chunked\" which is unexpected" , i + 1 , instanceType )
}
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expectedContentEncoding := trimAwsChunkedContentEncoding ( testCase . contentEncoding )
if expectedContentEncoding != objInfo . ContentEncoding {
t . Fatalf ( "Test %d: %s: ContentEncoding is set to \"%s\" which is unexpected, expected \"%s\"" , i + 1 , instanceType , objInfo . ContentEncoding , expectedContentEncoding )
}
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buffer := new ( bytes . Buffer )
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err = obj . GetObject ( testCase . bucketName , testCase . objectName , 0 , int64 ( testCase . dataLen ) , buffer )
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if err != nil {
t . Fatalf ( "Test %d: %s: Failed to fetch the copied object: <ERROR> %s" , i + 1 , instanceType , err )
}
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if ! bytes . Equal ( testCase . data , buffer . Bytes ( ) ) {
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t . Errorf ( "Test %d: %s: Data Mismatch: Data fetched back from the uploaded object doesn't match the original one." , i + 1 , instanceType )
}
buffer . Reset ( )
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}
}
}
// Wrapper for calling PutObject API handler tests for both XL multiple disks and FS single drive setup.
func TestAPIPutObjectHandler ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPIPutObjectHandler , [ ] string { "PutObject" } )
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}
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func testAPIPutObjectHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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// register event notifier.
err := initEventNotifier ( obj )
if err != nil {
t . Fatal ( "Notifier initialization failed." )
}
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objectName := "test-object"
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// byte data for PutObject.
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bytesData := generateBytesData ( 6 * humanize . KiByte )
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copySourceHeader := http . Header { }
copySourceHeader . Set ( "X-Amz-Copy-Source" , "somewhere" )
invalidMD5Header := http . Header { }
invalidMD5Header . Set ( "Content-Md5" , "42" )
addCustomHeaders := func ( req * http . Request , customHeaders http . Header ) {
for k , values := range customHeaders {
for _ , value := range values {
req . Header . Set ( k , value )
}
}
}
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// test cases with inputs and expected result for GetObject.
testCases := [ ] struct {
bucketName string
objectName string
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headers http . Header
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data [ ] byte
dataLen int
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accessKey string
secretKey string
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fault Fault
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// expected output.
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expectedRespStatus int // expected response status body.
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} {
// Test case - 1.
// Fetching the entire object and validating its contents.
{
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bucketName : bucketName ,
objectName : objectName ,
data : bytesData ,
dataLen : len ( bytesData ) ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusOK ,
} ,
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// Test case - 2.
// Test Case with invalid accessID.
{
bucketName : bucketName ,
objectName : objectName ,
data : bytesData ,
dataLen : len ( bytesData ) ,
accessKey : "Wrong-AcessID" ,
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secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusForbidden ,
} ,
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// Test case - 3.
// Test Case with invalid header key X-Amz-Copy-Source.
{
bucketName : bucketName ,
objectName : objectName ,
headers : copySourceHeader ,
data : bytesData ,
dataLen : len ( bytesData ) ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 4.
// Test Case with invalid Content-Md5 value
{
bucketName : bucketName ,
objectName : objectName ,
headers : invalidMD5Header ,
data : bytesData ,
dataLen : len ( bytesData ) ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 5.
// Test Case with object greater than maximum allowed size.
{
bucketName : bucketName ,
objectName : objectName ,
data : bytesData ,
dataLen : len ( bytesData ) ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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fault : TooBigObject ,
expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 6.
// Test Case with missing content length
{
bucketName : bucketName ,
objectName : objectName ,
data : bytesData ,
dataLen : len ( bytesData ) ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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fault : MissingContentLength ,
expectedRespStatus : http . StatusLengthRequired ,
} ,
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}
// Iterating over the cases, fetching the object validating the response.
for i , testCase := range testCases {
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var req , reqV2 * http . Request
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// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
rec := httptest . NewRecorder ( )
// construct HTTP request for Get Object end point.
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req , err = newTestSignedRequestV4 ( "PUT" , getPutObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
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int64 ( testCase . dataLen ) , bytes . NewReader ( testCase . data ) , testCase . accessKey , testCase . secretKey )
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if err != nil {
t . Fatalf ( "Test %d: Failed to create HTTP request for Put Object: <ERROR> %v" , i + 1 , err )
}
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// Add test case specific headers to the request.
addCustomHeaders ( req , testCase . headers )
// Inject faults if specified in testCase.fault
switch testCase . fault {
case MissingContentLength :
req . ContentLength = - 1
req . TransferEncoding = [ ] string { }
case TooBigObject :
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req . ContentLength = globalMaxObjectSize + 1
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}
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// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler,`func (api objectAPIHandlers) GetObjectHandler` handles the request.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != testCase . expectedRespStatus {
t . Fatalf ( "Case %d: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , testCase . expectedRespStatus , rec . Code )
}
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if testCase . expectedRespStatus == http . StatusOK {
buffer := new ( bytes . Buffer )
// Fetch the object to check whether the content is same as the one uploaded via PutObject.
err = obj . GetObject ( testCase . bucketName , testCase . objectName , 0 , int64 ( len ( bytesData ) ) , buffer )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed to fetch the copied object: <ERROR> %s" , i + 1 , instanceType , err )
}
if ! bytes . Equal ( bytesData , buffer . Bytes ( ) ) {
t . Errorf ( "Test %d: %s: Data Mismatch: Data fetched back from the uploaded object doesn't match the original one." , i + 1 , instanceType )
}
buffer . Reset ( )
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}
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// Verify response of the V2 signed HTTP request.
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
recV2 := httptest . NewRecorder ( )
// construct HTTP request for PUT Object endpoint.
reqV2 , err = newTestSignedRequestV2 ( "PUT" , getPutObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
int64 ( testCase . dataLen ) , bytes . NewReader ( testCase . data ) , testCase . accessKey , testCase . secretKey )
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if err != nil {
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t . Fatalf ( "Test %d: %s: Failed to create HTTP request for PutObject: <ERROR> %v" , i + 1 , instanceType , err )
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}
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// Add test case specific headers to the request.
addCustomHeaders ( reqV2 , testCase . headers )
// Inject faults if specified in testCase.fault
switch testCase . fault {
case MissingContentLength :
reqV2 . ContentLength = - 1
reqV2 . TransferEncoding = [ ] string { }
case TooBigObject :
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reqV2 . ContentLength = globalMaxObjectSize + 1
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}
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// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler.
apiRouter . ServeHTTP ( recV2 , reqV2 )
if recV2 . Code != testCase . expectedRespStatus {
t . Errorf ( "Test %d: %s: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , instanceType , testCase . expectedRespStatus , recV2 . Code )
}
if testCase . expectedRespStatus == http . StatusOK {
buffer := new ( bytes . Buffer )
// Fetch the object to check whether the content is same as the one uploaded via PutObject.
err = obj . GetObject ( testCase . bucketName , testCase . objectName , 0 , int64 ( len ( bytesData ) ) , buffer )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed to fetch the copied object: <ERROR> %s" , i + 1 , instanceType , err )
}
if ! bytes . Equal ( bytesData , buffer . Bytes ( ) ) {
t . Errorf ( "Test %d: %s: Data Mismatch: Data fetched back from the uploaded object doesn't match the original one." , i + 1 , instanceType )
}
buffer . Reset ( )
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}
}
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// Test for Anonymous/unsigned http request.
anonReq , err := newTestRequest ( "PUT" , getPutObjectURL ( "" , bucketName , objectName ) ,
int64 ( len ( "hello" ) ) , bytes . NewReader ( [ ] byte ( "hello" ) ) )
if err != nil {
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t . Fatalf ( "Minio %s: Failed to create an anonymous request for %s/%s: <ERROR> %v" ,
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instanceType , bucketName , objectName , err )
}
// ExecObjectLayerAPIAnonTest - Calls the HTTP API handler using the anonymous request, validates the ErrAccessDeniedResponse,
// sets the bucket policy using the policy statement generated from `getWriteOnlyObjectStatement` so that the
// unsigned request goes through and its validated again.
ExecObjectLayerAPIAnonTest ( t , "TestAPIPutObjectHandler" , bucketName , objectName , instanceType , apiRouter , anonReq , getWriteOnlyObjectStatement )
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// HTTP request to test the case of `objectLayer` being set to `nil`.
// There is no need to use an existing bucket or valid input for creating the request,
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
nilReq , err := newTestSignedRequestV4 ( "PUT" , getPutObjectURL ( "" , nilBucket , nilObject ) ,
0 , nil , "" , "" )
if err != nil {
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t . Errorf ( "Minio %s: Failed to create HTTP request for testing the response when object Layer is set to `nil`." , instanceType )
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}
// execute the object layer set to `nil` test.
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// `ExecObjectLayerAPINilTest` manages the operation.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
}
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// Tests sanity of attempting to copying each parts at offsets from an existing
// file and create a new object. Also validates if the written is same as what we
// expected.
func TestAPICopyObjectPartHandlerSanity ( t * testing . T ) {
defer DetectTestLeak ( t ) ( )
ExecObjectLayerAPITest ( t , testAPICopyObjectPartHandlerSanity , [ ] string { "CopyObjectPart" } )
}
func testAPICopyObjectPartHandlerSanity ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
credentials credential , t * testing . T ) {
objectName := "test-object"
// register event notifier.
err := initEventNotifier ( obj )
if err != nil {
t . Fatalf ( "Initializing event notifiers failed" )
}
// set of byte data for PutObject.
// object has to be created before running tests for Copy Object.
// this is required even to assert the copied object,
bytesData := [ ] struct {
byteData [ ] byte
} {
{ generateBytesData ( 6 * humanize . MiByte ) } ,
}
// set of inputs for uploading the objects before tests for downloading is done.
putObjectInputs := [ ] struct {
bucketName string
objectName string
contentLength int64
textData [ ] byte
metaData map [ string ] string
} {
// case - 1.
{ bucketName , objectName , int64 ( len ( bytesData [ 0 ] . byteData ) ) , bytesData [ 0 ] . byteData , make ( map [ string ] string ) } ,
}
sha256sum := ""
// iterate through the above set of inputs and upload the object.
for i , input := range putObjectInputs {
// uploading the object.
_ , err = obj . PutObject ( input . bucketName , input . objectName , input . contentLength ,
bytes . NewBuffer ( input . textData ) , input . metaData , sha256sum )
// if object upload fails stop the test.
if err != nil {
t . Fatalf ( "Put Object case %d: Error uploading object: <ERROR> %v" , i + 1 , err )
}
}
// Initiate Multipart upload for testing PutObjectPartHandler.
testObject := "testobject"
// PutObjectPart API HTTP Handler has to be tested in isolation,
// that is without any other handler being registered,
// That's why NewMultipartUpload is initiated using ObjectLayer.
uploadID , err := obj . NewMultipartUpload ( bucketName , testObject , nil )
if err != nil {
// Failed to create NewMultipartUpload, abort.
t . Fatalf ( "Minio %s : <ERROR> %s" , instanceType , err )
}
a := 0
b := globalMinPartSize - 1
var parts [ ] completePart
for partNumber := 1 ; partNumber <= 2 ; partNumber ++ {
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
rec := httptest . NewRecorder ( )
cpPartURL := getCopyObjectPartURL ( "" , bucketName , testObject , uploadID , fmt . Sprintf ( "%d" , partNumber ) )
// construct HTTP request for copy object.
var req * http . Request
req , err = newTestSignedRequestV4 ( "PUT" , cpPartURL , 0 , nil , credentials . AccessKey , credentials . SecretKey )
if err != nil {
t . Fatalf ( "Test failed to create HTTP request for copy object part: <ERROR> %v" , err )
}
// "X-Amz-Copy-Source" header contains the information about the source bucket and the object to copied.
req . Header . Set ( "X-Amz-Copy-Source" , url . QueryEscape ( pathJoin ( bucketName , objectName ) ) )
req . Header . Set ( "X-Amz-Copy-Source-Range" , fmt . Sprintf ( "bytes=%d-%d" , a , b ) )
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler, `func (api objectAPIHandlers) CopyObjectHandler` handles the request.
a = globalMinPartSize
b = len ( bytesData [ 0 ] . byteData ) - 1
apiRouter . ServeHTTP ( rec , req )
if rec . Code != http . StatusOK {
t . Fatalf ( "Test failed to create HTTP request for copy %d" , rec . Code )
}
resp := & CopyObjectPartResponse { }
if err = xmlDecoder ( rec . Body , resp , rec . Result ( ) . ContentLength ) ; err != nil {
t . Fatalf ( "Test failed to decode XML response: <ERROR> %v" , err )
}
parts = append ( parts , completePart {
PartNumber : partNumber ,
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ETag : canonicalizeETag ( resp . ETag ) ,
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} )
}
result , err := obj . CompleteMultipartUpload ( bucketName , testObject , uploadID , parts )
if err != nil {
t . Fatalf ( "Test: %s complete multipart upload failed: <ERROR> %v" , instanceType , err )
}
if result . Size != int64 ( len ( bytesData [ 0 ] . byteData ) ) {
t . Fatalf ( "Test: %s expected size not written: expected %d, got %d" , instanceType , len ( bytesData [ 0 ] . byteData ) , result . Size )
}
var buf bytes . Buffer
if err = obj . GetObject ( bucketName , testObject , 0 , int64 ( len ( bytesData [ 0 ] . byteData ) ) , & buf ) ; err != nil {
t . Fatalf ( "Test: %s reading completed file failed: <ERROR> %v" , instanceType , err )
}
if ! bytes . Equal ( buf . Bytes ( ) , bytesData [ 0 ] . byteData ) {
t . Fatalf ( "Test: %s returned data is not expected corruption detected:" , instanceType )
}
}
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// Wrapper for calling Copy Object Part API handler tests for both XL multiple disks and single node setup.
func TestAPICopyObjectPartHandler ( t * testing . T ) {
defer DetectTestLeak ( t ) ( )
ExecObjectLayerAPITest ( t , testAPICopyObjectPartHandler , [ ] string { "CopyObjectPart" } )
}
func testAPICopyObjectPartHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
credentials credential , t * testing . T ) {
objectName := "test-object"
// register event notifier.
err := initEventNotifier ( obj )
if err != nil {
t . Fatalf ( "Initializing event notifiers failed" )
}
// set of byte data for PutObject.
// object has to be created before running tests for Copy Object.
// this is required even to assert the copied object,
bytesData := [ ] struct {
byteData [ ] byte
} {
{ generateBytesData ( 6 * humanize . KiByte ) } ,
}
// set of inputs for uploading the objects before tests for downloading is done.
putObjectInputs := [ ] struct {
bucketName string
objectName string
contentLength int64
textData [ ] byte
metaData map [ string ] string
} {
// case - 1.
{ bucketName , objectName , int64 ( len ( bytesData [ 0 ] . byteData ) ) , bytesData [ 0 ] . byteData , make ( map [ string ] string ) } ,
}
sha256sum := ""
// iterate through the above set of inputs and upload the object.
for i , input := range putObjectInputs {
// uploading the object.
_ , err = obj . PutObject ( input . bucketName , input . objectName , input . contentLength , bytes . NewBuffer ( input . textData ) , input . metaData , sha256sum )
// if object upload fails stop the test.
if err != nil {
t . Fatalf ( "Put Object case %d: Error uploading object: <ERROR> %v" , i + 1 , err )
}
}
// Initiate Multipart upload for testing PutObjectPartHandler.
testObject := "testobject"
// PutObjectPart API HTTP Handler has to be tested in isolation,
// that is without any other handler being registered,
// That's why NewMultipartUpload is initiated using ObjectLayer.
uploadID , err := obj . NewMultipartUpload ( bucketName , testObject , nil )
if err != nil {
// Failed to create NewMultipartUpload, abort.
t . Fatalf ( "Minio %s : <ERROR> %s" , instanceType , err )
}
// test cases with inputs and expected result for Copy Object.
testCases := [ ] struct {
bucketName string
copySourceHeader string // data for "X-Amz-Copy-Source" header. Contains the object to be copied in the URL.
copySourceRange string // data for "X-Amz-Copy-Source-Range" header, contains the byte range offsets of data to be copied.
uploadID string // uploadID of the transaction.
invalidPartNumber bool // Sets an invalid multipart.
maximumPartNumber bool // Sets a maximum parts.
accessKey string
secretKey string
// expected output.
expectedRespStatus int
} {
// Test case - 1, copy part 1 from from newObject1, ignore request headers.
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusOK ,
} ,
// Test case - 2.
// Test case with invalid source object.
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" ) ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 3.
// Test case with new object name is same as object to be copied.
// Fail with file not found.
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + testObject ) ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusNotFound ,
} ,
// Test case - 4.
// Test case with valid byte range.
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
copySourceRange : "bytes=500-4096" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusOK ,
} ,
// Test case - 5.
// Test case with invalid byte range.
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
copySourceRange : "bytes=6145-" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusBadRequest ,
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} ,
// Test case - 6.
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// Test case with ivalid byte range for exceeding source size boundaries.
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
copySourceRange : "bytes=0-6144" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 7.
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// Test case with object name missing from source.
// fail with BadRequest.
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "//123" ) ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusBadRequest ,
} ,
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// Test case - 8.
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// Test case with non-existent source file.
// Case for the purpose of failing `api.ObjectAPI.GetObjectInfo`.
// Expecting the response status code to http.StatusNotFound (404).
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + "non-existent-object" ) ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusNotFound ,
} ,
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// Test case - 9.
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// Test case with non-existent source file.
// Case for the purpose of failing `api.ObjectAPI.PutObjectPart`.
// Expecting the response status code to http.StatusNotFound (404).
{
bucketName : "non-existent-destination-bucket" ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusNotFound ,
} ,
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// Test case - 10.
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// Case with invalid AccessKey.
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
accessKey : "Invalid-AccessID" ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusForbidden ,
} ,
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// Test case - 11.
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// Case with non-existent upload id.
{
bucketName : bucketName ,
uploadID : "-1" ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusNotFound ,
} ,
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// Test case - 12.
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// invalid part number.
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
invalidPartNumber : true ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusOK ,
} ,
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// Test case - 13.
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// maximum part number.
{
bucketName : bucketName ,
uploadID : uploadID ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
maximumPartNumber : true ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusOK ,
} ,
}
for i , testCase := range testCases {
var req * http . Request
var reqV2 * http . Request
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
rec := httptest . NewRecorder ( )
if ! testCase . invalidPartNumber || ! testCase . maximumPartNumber {
// construct HTTP request for copy object.
req , err = newTestSignedRequestV4 ( "PUT" , getCopyObjectPartURL ( "" , testCase . bucketName , testObject , testCase . uploadID , "1" ) , 0 , nil , testCase . accessKey , testCase . secretKey )
} else if testCase . invalidPartNumber {
req , err = newTestSignedRequestV4 ( "PUT" , getCopyObjectPartURL ( "" , testCase . bucketName , testObject , testCase . uploadID , "abc" ) , 0 , nil , testCase . accessKey , testCase . secretKey )
} else if testCase . maximumPartNumber {
req , err = newTestSignedRequestV4 ( "PUT" , getCopyObjectPartURL ( "" , testCase . bucketName , testObject , testCase . uploadID , "99999" ) , 0 , nil , testCase . accessKey , testCase . secretKey )
}
if err != nil {
t . Fatalf ( "Test %d: Failed to create HTTP request for copy Object: <ERROR> %v" , i + 1 , err )
}
// "X-Amz-Copy-Source" header contains the information about the source bucket and the object to copied.
if testCase . copySourceHeader != "" {
req . Header . Set ( "X-Amz-Copy-Source" , testCase . copySourceHeader )
}
if testCase . copySourceRange != "" {
req . Header . Set ( "X-Amz-Copy-Source-Range" , testCase . copySourceRange )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler, `func (api objectAPIHandlers) CopyObjectHandler` handles the request.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != testCase . expectedRespStatus {
t . Fatalf ( "Test %d: %s: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , instanceType , testCase . expectedRespStatus , rec . Code )
}
if rec . Code == http . StatusOK {
// See if the new part has been uploaded.
// testing whether the copy was successful.
var results ListPartsInfo
results , err = obj . ListObjectParts ( testCase . bucketName , testObject , testCase . uploadID , 0 , 1 )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed to look for copied object part: <ERROR> %s" , i + 1 , instanceType , err )
}
if len ( results . Parts ) != 1 {
t . Fatalf ( "Test %d: %s: Expected only one entry returned %d entries" , i + 1 , instanceType , len ( results . Parts ) )
}
}
// Verify response of the V2 signed HTTP request.
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
recV2 := httptest . NewRecorder ( )
reqV2 , err = newTestRequest ( "PUT" , getCopyObjectPartURL ( "" , testCase . bucketName , testObject , testCase . uploadID , "1" ) , 0 , nil )
if err != nil {
t . Fatalf ( "Test %d: Failed to create HTTP request for copy Object: <ERROR> %v" , i + 1 , err )
}
// "X-Amz-Copy-Source" header contains the information about the source bucket and the object to copied.
if testCase . copySourceHeader != "" {
reqV2 . Header . Set ( "X-Amz-Copy-Source" , testCase . copySourceHeader )
}
if testCase . copySourceRange != "" {
reqV2 . Header . Set ( "X-Amz-Copy-Source-Range" , testCase . copySourceRange )
}
err = signRequestV2 ( reqV2 , testCase . accessKey , testCase . secretKey )
if err != nil {
t . Fatalf ( "Failed to V2 Sign the HTTP request: %v." , err )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler.
apiRouter . ServeHTTP ( recV2 , reqV2 )
if recV2 . Code != testCase . expectedRespStatus {
t . Errorf ( "Test %d: %s: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , instanceType , testCase . expectedRespStatus , recV2 . Code )
}
}
// HTTP request for testing when `ObjectLayer` is set to `nil`.
// There is no need to use an existing bucket and valid input for creating the request
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
nilReq , err := newTestSignedRequestV4 ( "PUT" , getCopyObjectPartURL ( "" , nilBucket , nilObject , "0" , "0" ) ,
0 , bytes . NewReader ( [ ] byte ( "testNilObjLayer" ) ) , "" , "" )
if err != nil {
t . Errorf ( "Minio %s: Failed to create http request for testing the response when object Layer is set to `nil`." , instanceType )
}
// Below is how CopyObjectPartHandler is registered.
// bucket.Methods("PUT").Path("/{object:.+}").HeadersRegexp("X-Amz-Copy-Source", ".*?(\\/|%2F).*?").HandlerFunc(api.CopyObjectPartHandler).Queries("partNumber", "{partNumber:[0-9]+}", "uploadId", "{uploadId:.*}")
// Its necessary to set the "X-Amz-Copy-Source" header for the request to be accepted by the handler.
nilReq . Header . Set ( "X-Amz-Copy-Source" , url . QueryEscape ( "/" + nilBucket + "/" + nilObject ) )
// execute the object layer set to `nil` test.
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// `ExecObjectLayerAPINilTest` manages the operation.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
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}
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// Wrapper for calling Copy Object API handler tests for both XL multiple disks and single node setup.
func TestAPICopyObjectHandler ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPICopyObjectHandler , [ ] string { "CopyObject" } )
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}
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func testAPICopyObjectHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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objectName := "test-object"
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// object used for anonymous HTTP request test.
anonObject := "anon-object"
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// register event notifier.
err := initEventNotifier ( obj )
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if err != nil {
t . Fatalf ( "Initializing event notifiers failed" )
}
// set of byte data for PutObject.
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// object has to be created before running tests for Copy Object.
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// this is required even to assert the copied object,
bytesData := [ ] struct {
byteData [ ] byte
} {
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{ generateBytesData ( 6 * humanize . KiByte ) } ,
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}
buffers := [ ] * bytes . Buffer {
new ( bytes . Buffer ) ,
new ( bytes . Buffer ) ,
}
// set of inputs for uploading the objects before tests for downloading is done.
putObjectInputs := [ ] struct {
bucketName string
objectName string
contentLength int64
textData [ ] byte
metaData map [ string ] string
} {
// case - 1.
{ bucketName , objectName , int64 ( len ( bytesData [ 0 ] . byteData ) ) , bytesData [ 0 ] . byteData , make ( map [ string ] string ) } ,
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// case - 2.
// used for anonymous HTTP request test.
{ bucketName , anonObject , int64 ( len ( bytesData [ 0 ] . byteData ) ) , bytesData [ 0 ] . byteData , make ( map [ string ] string ) } ,
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}
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sha256sum := ""
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// iterate through the above set of inputs and upload the object.
for i , input := range putObjectInputs {
// uploading the object.
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_ , err = obj . PutObject ( input . bucketName , input . objectName , input . contentLength , bytes . NewBuffer ( input . textData ) , input . metaData , sha256sum )
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// if object upload fails stop the test.
if err != nil {
t . Fatalf ( "Put Object case %d: Error uploading object: <ERROR> %v" , i + 1 , err )
}
}
// test cases with inputs and expected result for Copy Object.
testCases := [ ] struct {
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bucketName string
newObjectName string // name of the newly copied object.
copySourceHeader string // data for "X-Amz-Copy-Source" header. Contains the object to be copied in the URL.
copyModifiedHeader string // data for "X-Amz-Copy-Source-If-Modified-Since" header
copyUnmodifiedHeader string // data for "X-Amz-Copy-Source-If-Unmodified-Since" header
metadataGarbage bool
metadataReplace bool
metadataCopy bool
metadata map [ string ] string
accessKey string
secretKey string
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// expected output.
expectedRespStatus int
} {
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// Test case - 1, copy metadata from newObject1, ignore request headers.
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{
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bucketName : bucketName ,
newObjectName : "newObject1" ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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metadata : map [ string ] string {
"Content-Type" : "application/json" ,
} ,
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expectedRespStatus : http . StatusOK ,
} ,
// Test case - 2.
// Test case with invalid source object.
{
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bucketName : bucketName ,
newObjectName : "newObject1" ,
copySourceHeader : url . QueryEscape ( "/" ) ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusBadRequest ,
} ,
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// Test case - 3.
// Test case with new object name is same as object to be copied.
{
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bucketName : bucketName ,
newObjectName : objectName ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusBadRequest ,
} ,
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// Test case - 4.
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// Test case with new object name is same as object to be copied.
// But source copy is without leading slash
{
bucketName : bucketName ,
newObjectName : objectName ,
copySourceHeader : url . QueryEscape ( bucketName + "/" + objectName ) ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 5.
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// Test case with new object name is same as object to be copied
// but metadata is updated.
{
bucketName : bucketName ,
newObjectName : objectName ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
metadata : map [ string ] string {
"Content-Type" : "application/json" ,
} ,
metadataReplace : true ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusOK ,
} ,
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// Test case - 6.
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// Test case with invalid metadata-directive.
{
bucketName : bucketName ,
newObjectName : "newObject1" ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
metadata : map [ string ] string {
"Content-Type" : "application/json" ,
} ,
metadataGarbage : true ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusBadRequest ,
} ,
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// Test case - 7.
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// Test case with new object name is same as object to be copied
// fail with BadRequest.
{
bucketName : bucketName ,
newObjectName : objectName ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
metadata : map [ string ] string {
"Content-Type" : "application/json" ,
} ,
metadataCopy : true ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusBadRequest ,
} ,
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// Test case - 8.
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// Test case with non-existent source file.
// Case for the purpose of failing `api.ObjectAPI.GetObjectInfo`.
// Expecting the response status code to http.StatusNotFound (404).
{
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bucketName : bucketName ,
newObjectName : objectName ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + "non-existent-object" ) ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusNotFound ,
} ,
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// Test case - 9.
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// Test case with non-existent source file.
// Case for the purpose of failing `api.ObjectAPI.PutObject`.
// Expecting the response status code to http.StatusNotFound (404).
{
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bucketName : "non-existent-destination-bucket" ,
newObjectName : objectName ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusNotFound ,
} ,
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// Test case - 10.
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// Case with invalid AccessKey.
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{
bucketName : bucketName ,
newObjectName : objectName ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
accessKey : "Invalid-AccessID" ,
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secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusForbidden ,
} ,
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// Test case - 11, copy metadata from newObject1 with satisfying modified header.
{
bucketName : bucketName ,
newObjectName : "newObject1" ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
copyModifiedHeader : "Mon, 02 Jan 2006 15:04:05 GMT" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusOK ,
} ,
// Test case - 12, copy metadata from newObject1 with unsatisfying modified header.
{
bucketName : bucketName ,
newObjectName : "newObject1" ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
copyModifiedHeader : "Mon, 02 Jan 2217 15:04:05 GMT" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusPreconditionFailed ,
} ,
// Test case - 13, copy metadata from newObject1 with wrong modified header format
{
bucketName : bucketName ,
newObjectName : "newObject1" ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
copyModifiedHeader : "Mon, 02 Jan 2217 15:04:05 +00:00" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusOK ,
} ,
// Test case - 14, copy metadata from newObject1 with satisfying unmodified header.
{
bucketName : bucketName ,
newObjectName : "newObject1" ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
copyUnmodifiedHeader : "Mon, 02 Jan 2217 15:04:05 GMT" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusOK ,
} ,
// Test case - 15, copy metadata from newObject1 with unsatisfying unmodified header.
{
bucketName : bucketName ,
newObjectName : "newObject1" ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
copyUnmodifiedHeader : "Mon, 02 Jan 2007 15:04:05 GMT" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusPreconditionFailed ,
} ,
// Test case - 16, copy metadata from newObject1 with incorrect unmodified header format.
{
bucketName : bucketName ,
newObjectName : "newObject1" ,
copySourceHeader : url . QueryEscape ( "/" + bucketName + "/" + objectName ) ,
copyUnmodifiedHeader : "Mon, 02 Jan 2007 15:04:05 +00:00" ,
accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
expectedRespStatus : http . StatusOK ,
} ,
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}
for i , testCase := range testCases {
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var req * http . Request
var reqV2 * http . Request
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// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
rec := httptest . NewRecorder ( )
// construct HTTP request for copy object.
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req , err = newTestSignedRequestV4 ( "PUT" , getCopyObjectURL ( "" , testCase . bucketName , testCase . newObjectName ) ,
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0 , nil , testCase . accessKey , testCase . secretKey )
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if err != nil {
t . Fatalf ( "Test %d: Failed to create HTTP request for copy Object: <ERROR> %v" , i + 1 , err )
}
// "X-Amz-Copy-Source" header contains the information about the source bucket and the object to copied.
if testCase . copySourceHeader != "" {
req . Header . Set ( "X-Amz-Copy-Source" , testCase . copySourceHeader )
}
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if testCase . copyModifiedHeader != "" {
req . Header . Set ( "X-Amz-Copy-Source-If-Modified-Since" , testCase . copyModifiedHeader )
}
if testCase . copyUnmodifiedHeader != "" {
req . Header . Set ( "X-Amz-Copy-Source-If-Unmodified-Since" , testCase . copyUnmodifiedHeader )
}
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// Add custom metadata.
for k , v := range testCase . metadata {
req . Header . Set ( k , v )
}
if testCase . metadataReplace {
req . Header . Set ( "X-Amz-Metadata-Directive" , "REPLACE" )
}
if testCase . metadataCopy {
req . Header . Set ( "X-Amz-Metadata-Directive" , "COPY" )
}
if testCase . metadataGarbage {
req . Header . Set ( "X-Amz-Metadata-Directive" , "Unknown" )
}
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// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler, `func (api objectAPIHandlers) CopyObjectHandler` handles the request.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != testCase . expectedRespStatus {
t . Fatalf ( "Test %d: %s: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , instanceType , testCase . expectedRespStatus , rec . Code )
}
if rec . Code == http . StatusOK {
// See if the new object is formed.
// testing whether the copy was successful.
err = obj . GetObject ( testCase . bucketName , testCase . newObjectName , 0 , int64 ( len ( bytesData [ 0 ] . byteData ) ) , buffers [ 0 ] )
if err != nil {
t . Fatalf ( "Test %d: %s: Failed to fetch the copied object: <ERROR> %s" , i + 1 , instanceType , err )
}
if ! bytes . Equal ( bytesData [ 0 ] . byteData , buffers [ 0 ] . Bytes ( ) ) {
t . Errorf ( "Test %d: %s: Data Mismatch: Data fetched back from the copied object doesn't match the original one." , i + 1 , instanceType )
}
buffers [ 0 ] . Reset ( )
}
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// Verify response of the V2 signed HTTP request.
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
recV2 := httptest . NewRecorder ( )
reqV2 , err = newTestRequest ( "PUT" , getCopyObjectURL ( "" , testCase . bucketName , testCase . newObjectName ) , 0 , nil )
if err != nil {
t . Fatalf ( "Test %d: Failed to create HTTP request for copy Object: <ERROR> %v" , i + 1 , err )
}
// "X-Amz-Copy-Source" header contains the information about the source bucket and the object to copied.
if testCase . copySourceHeader != "" {
reqV2 . Header . Set ( "X-Amz-Copy-Source" , testCase . copySourceHeader )
}
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if testCase . copyModifiedHeader != "" {
reqV2 . Header . Set ( "X-Amz-Copy-Source-If-Modified-Since" , testCase . copyModifiedHeader )
}
if testCase . copyUnmodifiedHeader != "" {
reqV2 . Header . Set ( "X-Amz-Copy-Source-If-Unmodified-Since" , testCase . copyUnmodifiedHeader )
}
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// Add custom metadata.
for k , v := range testCase . metadata {
reqV2 . Header . Set ( k , v + "+x" )
}
if testCase . metadataReplace {
reqV2 . Header . Set ( "X-Amz-Metadata-Directive" , "REPLACE" )
}
if testCase . metadataCopy {
reqV2 . Header . Set ( "X-Amz-Metadata-Directive" , "COPY" )
}
if testCase . metadataGarbage {
reqV2 . Header . Set ( "X-Amz-Metadata-Directive" , "Unknown" )
}
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err = signRequestV2 ( reqV2 , testCase . accessKey , testCase . secretKey )
if err != nil {
t . Fatalf ( "Failed to V2 Sign the HTTP request: %v." , err )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler.
apiRouter . ServeHTTP ( recV2 , reqV2 )
if recV2 . Code != testCase . expectedRespStatus {
t . Errorf ( "Test %d: %s: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , instanceType , testCase . expectedRespStatus , recV2 . Code )
}
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}
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// Test for Anonymous/unsigned http request.
newCopyAnonObject := "new-anon-obj"
anonReq , err := newTestRequest ( "PUT" , getCopyObjectURL ( "" , bucketName , newCopyAnonObject ) , 0 , nil )
if err != nil {
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t . Fatalf ( "Minio %s: Failed to create an anonymous request for %s/%s: <ERROR> %v" ,
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instanceType , bucketName , "new-anon-obj" , err )
}
// Below is how CopyObjectHandler is registered.
// bucket.Methods("PUT").Path("/{object:.+}").HeadersRegexp("X-Amz-Copy-Source", ".*?(\\/|%2F).*?")
// Its necessary to set the "X-Amz-Copy-Source" header for the request to be accepted by the handler.
anonReq . Header . Set ( "X-Amz-Copy-Source" , url . QueryEscape ( "/" + bucketName + "/" + anonObject ) )
// ExecObjectLayerAPIAnonTest - Calls the HTTP API handler using the anonymous request, validates the ErrAccessDeniedResponse,
// sets the bucket policy using the policy statement generated from `getWriteOnlyObjectStatement` so that the
// unsigned request goes through and its validated again.
ExecObjectLayerAPIAnonTest ( t , "TestAPICopyObjectHandler" , bucketName , newCopyAnonObject , instanceType , apiRouter , anonReq , getWriteOnlyObjectStatement )
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// HTTP request to test the case of `objectLayer` being set to `nil`.
// There is no need to use an existing bucket or valid input for creating the request,
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
nilReq , err := newTestSignedRequestV4 ( "PUT" , getCopyObjectURL ( "" , nilBucket , nilObject ) ,
0 , nil , "" , "" )
// Below is how CopyObjectHandler is registered.
// bucket.Methods("PUT").Path("/{object:.+}").HeadersRegexp("X-Amz-Copy-Source", ".*?(\\/|%2F).*?")
// Its necessary to set the "X-Amz-Copy-Source" header for the request to be accepted by the handler.
nilReq . Header . Set ( "X-Amz-Copy-Source" , url . QueryEscape ( "/" + nilBucket + "/" + nilObject ) )
if err != nil {
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t . Errorf ( "Minio %s: Failed to create HTTP request for testing the response when object Layer is set to `nil`." , instanceType )
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}
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// execute the object layer set to `nil` test.
// `ExecObjectLayerAPINilTest` manages the operation.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
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}
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// Wrapper for calling NewMultipartUpload tests for both XL multiple disks and single node setup.
// First register the HTTP handler for NewMutlipartUpload, then a HTTP request for NewMultipart upload is made.
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// The UploadID from the response body is parsed and its existence is asserted with an attempt to ListParts using it.
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func TestAPINewMultipartHandler ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPINewMultipartHandler , [ ] string { "NewMultipart" } )
}
func testAPINewMultipartHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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objectName := "test-object-new-multipart"
rec := httptest . NewRecorder ( )
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// construct HTTP request for NewMultipart upload.
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req , err := newTestSignedRequestV4 ( "POST" , getNewMultipartURL ( "" , bucketName , objectName ) ,
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0 , nil , credentials . AccessKey , credentials . SecretKey )
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if err != nil {
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t . Fatalf ( "Failed to create HTTP request for NewMultipart Request: <ERROR> %v" , err )
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}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to executes the registered handler.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != http . StatusOK {
t . Fatalf ( "%s: Expected the response status to be `%d`, but instead found `%d`" , instanceType , http . StatusOK , rec . Code )
}
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// decode the response body.
decoder := xml . NewDecoder ( rec . Body )
multipartResponse := & InitiateMultipartUploadResponse { }
err = decoder . Decode ( multipartResponse )
if err != nil {
t . Fatalf ( "Error decoding the recorded response Body" )
}
// verify the uploadID my making an attempt to list parts.
_ , err = obj . ListObjectParts ( bucketName , objectName , multipartResponse . UploadID , 0 , 1 )
if err != nil {
t . Fatalf ( "Invalid UploadID: <ERROR> %s" , err )
}
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// Testing the response for Invalid AcccessID.
// Forcing the signature check to fail.
rec = httptest . NewRecorder ( )
// construct HTTP request for NewMultipart upload.
// Setting an invalid accessID.
req , err = newTestSignedRequestV4 ( "POST" , getNewMultipartURL ( "" , bucketName , objectName ) ,
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0 , nil , "Invalid-AccessID" , credentials . SecretKey )
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if err != nil {
t . Fatalf ( "Failed to create HTTP request for NewMultipart Request: <ERROR> %v" , err )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP method to execute the logic of the handler.
// Call the ServeHTTP to executes the registered handler.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != http . StatusForbidden {
t . Fatalf ( "%s: Expected the response status to be `%d`, but instead found `%d`" , instanceType , http . StatusForbidden , rec . Code )
}
// Verify response of the V2 signed HTTP request.
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
recV2 := httptest . NewRecorder ( )
// construct HTTP request for NewMultipartUpload endpoint.
reqV2 , err := newTestSignedRequestV2 ( "POST" , getNewMultipartURL ( "" , bucketName , objectName ) ,
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0 , nil , credentials . AccessKey , credentials . SecretKey )
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if err != nil {
t . Fatalf ( "Failed to create HTTP request for NewMultipart Request: <ERROR> %v" , err )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler.
apiRouter . ServeHTTP ( recV2 , reqV2 )
// Assert the response code with the expected status.
if recV2 . Code != http . StatusOK {
t . Fatalf ( "%s: Expected the response status to be `%d`, but instead found `%d`" , instanceType , http . StatusOK , recV2 . Code )
}
// decode the response body.
decoder = xml . NewDecoder ( recV2 . Body )
multipartResponse = & InitiateMultipartUploadResponse { }
err = decoder . Decode ( multipartResponse )
if err != nil {
t . Fatalf ( "Error decoding the recorded response Body" )
}
// verify the uploadID my making an attempt to list parts.
_ , err = obj . ListObjectParts ( bucketName , objectName , multipartResponse . UploadID , 0 , 1 )
if err != nil {
t . Fatalf ( "Invalid UploadID: <ERROR> %s" , err )
}
// Testing the response for invalid AcccessID.
// Forcing the V2 signature check to fail.
recV2 = httptest . NewRecorder ( )
// construct HTTP request for NewMultipartUpload endpoint.
// Setting invalid AccessID.
reqV2 , err = newTestSignedRequestV2 ( "POST" , getNewMultipartURL ( "" , bucketName , objectName ) ,
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0 , nil , "Invalid-AccessID" , credentials . SecretKey )
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if err != nil {
t . Fatalf ( "Failed to create HTTP request for NewMultipart Request: <ERROR> %v" , err )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler.
apiRouter . ServeHTTP ( recV2 , reqV2 )
// Assert the response code with the expected status.
if recV2 . Code != http . StatusForbidden {
t . Fatalf ( "%s: Expected the response status to be `%d`, but instead found `%d`" , instanceType , http . StatusForbidden , recV2 . Code )
}
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// Test for Anonymous/unsigned http request.
anonReq , err := newTestRequest ( "POST" , getNewMultipartURL ( "" , bucketName , objectName ) , 0 , nil )
if err != nil {
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t . Fatalf ( "Minio %s: Failed to create an anonymous request for %s/%s: <ERROR> %v" ,
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instanceType , bucketName , objectName , err )
}
// ExecObjectLayerAPIAnonTest - Calls the HTTP API handler using the anonymous request, validates the ErrAccessDeniedResponse,
// sets the bucket policy using the policy statement generated from `getWriteOnlyObjectStatement` so that the
// unsigned request goes through and its validated again.
ExecObjectLayerAPIAnonTest ( t , "TestAPINewMultipartHandler" , bucketName , objectName , instanceType , apiRouter , anonReq , getWriteOnlyObjectStatement )
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// HTTP request to test the case of `objectLayer` being set to `nil`.
// There is no need to use an existing bucket or valid input for creating the request,
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
nilReq , err := newTestSignedRequestV4 ( "POST" , getNewMultipartURL ( "" , nilBucket , nilObject ) ,
0 , nil , "" , "" )
if err != nil {
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t . Errorf ( "Minio %s: Failed to create HTTP request for testing the response when object Layer is set to `nil`." , instanceType )
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}
// execute the object layer set to `nil` test.
// `ExecObjectLayerAPINilTest` manages the operation.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
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}
// Wrapper for calling NewMultipartUploadParallel tests for both XL multiple disks and single node setup.
// The objective of the test is to initialte multipart upload on the same object 10 times concurrently,
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// The UploadID from the response body is parsed and its existence is asserted with an attempt to ListParts using it.
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func TestAPINewMultipartHandlerParallel ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPINewMultipartHandlerParallel , [ ] string { "NewMultipart" } )
}
func testAPINewMultipartHandlerParallel ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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// used for storing the uploadID's parsed on concurrent HTTP requests for NewMultipart upload on the same object.
testUploads := struct {
sync . Mutex
uploads [ ] string
} { }
objectName := "test-object-new-multipart-parallel"
var wg sync . WaitGroup
for i := 0 ; i < 10 ; i ++ {
wg . Add ( 1 )
// Initiate NewMultipart upload on the same object 10 times concurrrently.
go func ( ) {
defer wg . Done ( )
rec := httptest . NewRecorder ( )
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// construct HTTP request NewMultipartUpload.
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req , err := newTestSignedRequestV4 ( "POST" , getNewMultipartURL ( "" , bucketName , objectName ) , 0 , nil , credentials . AccessKey , credentials . SecretKey )
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if err != nil {
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t . Fatalf ( "Failed to create HTTP request for NewMultipart request: <ERROR> %v" , err )
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}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to executes the registered handler.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != http . StatusOK {
t . Fatalf ( "Minio %s: Expected the response status to be `%d`, but instead found `%d`" , instanceType , http . StatusOK , rec . Code )
}
// decode the response body.
decoder := xml . NewDecoder ( rec . Body )
multipartResponse := & InitiateMultipartUploadResponse { }
err = decoder . Decode ( multipartResponse )
if err != nil {
t . Fatalf ( "Minio %s: Error decoding the recorded response Body" , instanceType )
}
// push the obtained upload ID from the response into the array.
testUploads . Lock ( )
testUploads . uploads = append ( testUploads . uploads , multipartResponse . UploadID )
testUploads . Unlock ( )
} ( )
}
// Wait till all go routines finishes execution.
wg . Wait ( )
// Validate the upload ID by an attempt to list parts using it.
for _ , uploadID := range testUploads . uploads {
_ , err := obj . ListObjectParts ( bucketName , objectName , uploadID , 0 , 1 )
if err != nil {
t . Fatalf ( "Invalid UploadID: <ERROR> %s" , err )
}
}
}
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// The UploadID from the response body is parsed and its existence is asserted with an attempt to ListParts using it.
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func TestAPICompleteMultipartHandler ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPICompleteMultipartHandler , [ ] string { "CompleteMultipart" } )
}
func testAPICompleteMultipartHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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var err error
// register event notifier.
err = initEventNotifier ( obj )
if err != nil {
t . Fatal ( "Notifier initialization failed." )
}
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// object used for the test.
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objectName := "test-object-new-multipart"
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// uploadID obtained from NewMultipart upload.
var uploadID string
// upload IDs collected.
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var uploadIDs [ ] string
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for i := 0 ; i < 2 ; i ++ {
// initiate new multipart uploadID.
uploadID , err = obj . NewMultipartUpload ( bucketName , objectName , nil )
if err != nil {
// Failed to create NewMultipartUpload, abort.
t . Fatalf ( "Minio %s : <ERROR> %s" , instanceType , err )
}
uploadIDs = append ( uploadIDs , uploadID )
}
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// Parts with size greater than 5 MB.
// Generating a 6MB byte array.
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validPart := bytes . Repeat ( [ ] byte ( "abcdef" ) , 1 * humanize . MiByte )
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validPartMD5 := getMD5Hash ( validPart )
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// Create multipart parts.
// Need parts to be uploaded before CompleteMultiPartUpload can be called tested.
parts := [ ] struct {
bucketName string
objName string
uploadID string
PartID int
inputReaderData string
inputMd5 string
intputDataSize int64
} {
// Case 1-4.
// Creating sequence of parts for same uploadID.
{ bucketName , objectName , uploadIDs [ 0 ] , 1 , "abcd" , "e2fc714c4727ee9395f324cd2e7f331f" , int64 ( len ( "abcd" ) ) } ,
{ bucketName , objectName , uploadIDs [ 0 ] , 2 , "efgh" , "1f7690ebdd9b4caf8fab49ca1757bf27" , int64 ( len ( "efgh" ) ) } ,
{ bucketName , objectName , uploadIDs [ 0 ] , 3 , "ijkl" , "09a0877d04abf8759f99adec02baf579" , int64 ( len ( "abcd" ) ) } ,
{ bucketName , objectName , uploadIDs [ 0 ] , 4 , "mnop" , "e132e96a5ddad6da8b07bba6f6131fef" , int64 ( len ( "abcd" ) ) } ,
// Part with size larger than 5Mb.
{ bucketName , objectName , uploadIDs [ 0 ] , 5 , string ( validPart ) , validPartMD5 , int64 ( len ( string ( validPart ) ) ) } ,
{ bucketName , objectName , uploadIDs [ 0 ] , 6 , string ( validPart ) , validPartMD5 , int64 ( len ( string ( validPart ) ) ) } ,
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// Part with size larger than 5Mb.
// Parts uploaded for anonymous/unsigned API handler test.
{ bucketName , objectName , uploadIDs [ 1 ] , 1 , string ( validPart ) , validPartMD5 , int64 ( len ( string ( validPart ) ) ) } ,
{ bucketName , objectName , uploadIDs [ 1 ] , 2 , string ( validPart ) , validPartMD5 , int64 ( len ( string ( validPart ) ) ) } ,
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}
// Iterating over creatPartCases to generate multipart chunks.
for _ , part := range parts {
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_ , err = obj . PutObjectPart ( part . bucketName , part . objName , part . uploadID , part . PartID , part . intputDataSize ,
bytes . NewBufferString ( part . inputReaderData ) , part . inputMd5 , "" )
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if err != nil {
t . Fatalf ( "%s : %s" , instanceType , err )
}
}
// Parts to be sent as input for CompleteMultipartUpload.
inputParts := [ ] struct {
parts [ ] completePart
} {
// inputParts - 0.
// Case for replicating ETag mismatch.
{
[ ] completePart {
{ ETag : "abcd" , PartNumber : 1 } ,
} ,
} ,
// inputParts - 1.
// should error out with part too small.
{
[ ] completePart {
{ ETag : "e2fc714c4727ee9395f324cd2e7f331f" , PartNumber : 1 } ,
{ ETag : "1f7690ebdd9b4caf8fab49ca1757bf27" , PartNumber : 2 } ,
} ,
} ,
// inputParts - 2.
// Case with invalid Part number.
{
[ ] completePart {
{ ETag : "e2fc714c4727ee9395f324cd2e7f331f" , PartNumber : 10 } ,
} ,
} ,
// inputParts - 3.
// Case with valid parts,but parts are unsorted.
// Part size greater than 5MB.
{
[ ] completePart {
{ ETag : validPartMD5 , PartNumber : 6 } ,
{ ETag : validPartMD5 , PartNumber : 5 } ,
} ,
} ,
// inputParts - 4.
// Case with valid part.
// Part size greater than 5MB.
{
[ ] completePart {
{ ETag : validPartMD5 , PartNumber : 5 } ,
{ ETag : validPartMD5 , PartNumber : 6 } ,
} ,
} ,
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// inputParts - 5.
// Used for the case of testing for anonymous API request.
// Part size greater than 5MB.
{
[ ] completePart {
{ ETag : validPartMD5 , PartNumber : 1 } ,
{ ETag : validPartMD5 , PartNumber : 2 } ,
} ,
} ,
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}
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// on successful complete multipart operation the s3MD5 for the parts uploaded will be returned.
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s3MD5 , err := getCompleteMultipartMD5 ( inputParts [ 3 ] . parts )
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if err != nil {
t . Fatalf ( "Obtaining S3MD5 failed" )
}
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// generating the response body content for the success case.
successResponse := generateCompleteMultpartUploadResponse ( bucketName , objectName , getGetObjectURL ( "" , bucketName , objectName ) , s3MD5 )
encodedSuccessResponse := encodeResponse ( successResponse )
testCases := [ ] struct {
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bucket string
object string
uploadID string
parts [ ] completePart
accessKey string
secretKey string
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// Expected output of CompleteMultipartUpload.
expectedContent [ ] byte
// Expected HTTP Response status.
expectedRespStatus int
} {
// Test case - 1.
// Upload and PartNumber exists, But a deliberate ETag mismatch is introduced.
{
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bucket : bucketName ,
object : objectName ,
uploadID : uploadIDs [ 0 ] ,
parts : inputParts [ 0 ] . parts ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( toAPIErrorCode ( BadDigest { } ) ) ,
getGetObjectURL ( "" , bucketName , objectName ) ) ) ,
expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 2.
// No parts specified in completePart{}.
// Should return ErrMalformedXML in the response body.
{
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bucket : bucketName ,
object : objectName ,
uploadID : uploadIDs [ 0 ] ,
parts : [ ] completePart { } ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( ErrMalformedXML ) ,
getGetObjectURL ( "" , bucketName , objectName ) ) ) ,
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expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 3.
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// Non-Existent uploadID.
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// 404 Not Found response status expected.
{
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bucket : bucketName ,
object : objectName ,
uploadID : "abc" ,
parts : inputParts [ 0 ] . parts ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( toAPIErrorCode ( InvalidUploadID { UploadID : "abc" } ) ) ,
getGetObjectURL ( "" , bucketName , objectName ) ) ) ,
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expectedRespStatus : http . StatusNotFound ,
} ,
// Test case - 4.
// Case with part size being less than minimum allowed size.
{
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bucket : bucketName ,
object : objectName ,
uploadID : uploadIDs [ 0 ] ,
parts : inputParts [ 1 ] . parts ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : encodeResponse ( completeMultipartAPIError { int64 ( 4 ) , int64 ( 5242880 ) , 1 , "e2fc714c4727ee9395f324cd2e7f331f" ,
getAPIErrorResponse ( getAPIError ( toAPIErrorCode ( PartTooSmall { PartNumber : 1 } ) ) ,
getGetObjectURL ( "" , bucketName , objectName ) ) } ) ,
expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 5.
// TestCase with invalid Part Number.
{
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bucket : bucketName ,
object : objectName ,
uploadID : uploadIDs [ 0 ] ,
parts : inputParts [ 2 ] . parts ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( toAPIErrorCode ( InvalidPart { } ) ) ,
getGetObjectURL ( "" , bucketName , objectName ) ) ) ,
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expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 6.
// Parts are not sorted according to the part number.
// This should return ErrInvalidPartOrder in the response body.
{
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bucket : bucketName ,
object : objectName ,
uploadID : uploadIDs [ 0 ] ,
parts : inputParts [ 3 ] . parts ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( ErrInvalidPartOrder ) ,
getGetObjectURL ( "" , bucketName , objectName ) ) ) ,
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expectedRespStatus : http . StatusBadRequest ,
} ,
// Test case - 7.
// Test case with proper parts.
// Should successed and the content in the response body is asserted.
{
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bucket : bucketName ,
object : objectName ,
uploadID : uploadIDs [ 0 ] ,
parts : inputParts [ 4 ] . parts ,
accessKey : "Invalid-AccessID" ,
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secretKey : credentials . SecretKey ,
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expectedContent : encodeResponse ( getAPIErrorResponse ( getAPIError ( ErrInvalidAccessKeyID ) ,
getGetObjectURL ( "" , bucketName , objectName ) ) ) ,
expectedRespStatus : http . StatusForbidden ,
} ,
// Test case - 8.
// Test case with proper parts.
// Should successed and the content in the response body is asserted.
{
bucket : bucketName ,
object : objectName ,
uploadID : uploadIDs [ 0 ] ,
parts : inputParts [ 4 ] . parts ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedContent : encodedSuccessResponse ,
expectedRespStatus : http . StatusOK ,
} ,
}
for i , testCase := range testCases {
var req * http . Request
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var completeBytes , actualContent [ ] byte
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// Complete multipart upload parts.
completeUploads := & completeMultipartUpload {
Parts : testCase . parts ,
}
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completeBytes , err = xml . Marshal ( completeUploads )
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if err != nil {
t . Fatalf ( "Error XML encoding of parts: <ERROR> %s." , err )
}
// Indicating that all parts are uploaded and initiating completeMultipartUpload.
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req , err = newTestSignedRequestV4 ( "POST" , getCompleteMultipartUploadURL ( "" , bucketName , objectName , testCase . uploadID ) ,
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int64 ( len ( completeBytes ) ) , bytes . NewReader ( completeBytes ) , testCase . accessKey , testCase . secretKey )
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if err != nil {
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t . Fatalf ( "Failed to create HTTP request for CompleteMultipartUpload: <ERROR> %v" , err )
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}
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rec := httptest . NewRecorder ( )
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to executes the registered handler.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != testCase . expectedRespStatus {
t . Errorf ( "Case %d: Minio %s: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , instanceType , testCase . expectedRespStatus , rec . Code )
}
// read the response body.
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actualContent , err = ioutil . ReadAll ( rec . Body )
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if err != nil {
t . Fatalf ( "Test %d : Minio %s: Failed parsing response body: <ERROR> %v" , i + 1 , instanceType , err )
}
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// Verify whether the bucket obtained object is same as the one created.
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if ! bytes . Equal ( testCase . expectedContent , actualContent ) {
t . Errorf ( "Test %d : Minio %s: Object content differs from expected value." , i + 1 , instanceType )
}
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}
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// Testing for anonymous API request.
var completeBytes [ ] byte
// Complete multipart upload parts.
completeUploads := & completeMultipartUpload {
Parts : inputParts [ 5 ] . parts ,
}
completeBytes , err = xml . Marshal ( completeUploads )
if err != nil {
t . Fatalf ( "Error XML encoding of parts: <ERROR> %s." , err )
}
// create unsigned HTTP request for CompleteMultipart upload.
anonReq , err := newTestRequest ( "POST" , getCompleteMultipartUploadURL ( "" , bucketName , objectName , uploadIDs [ 1 ] ) ,
int64 ( len ( completeBytes ) ) , bytes . NewReader ( completeBytes ) )
if err != nil {
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t . Fatalf ( "Minio %s: Failed to create an anonymous request for %s/%s: <ERROR> %v" ,
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instanceType , bucketName , objectName , err )
}
// ExecObjectLayerAPIAnonTest - Calls the HTTP API handler using the anonymous request, validates the ErrAccessDeniedResponse,
// sets the bucket policy using the policy statement generated from `getWriteOnlyObjectStatement` so that the
// unsigned request goes through and its validated again.
ExecObjectLayerAPIAnonTest ( t , "TestAPICompleteMultipartHandler" , bucketName , objectName , instanceType ,
apiRouter , anonReq , getWriteOnlyObjectStatement )
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// HTTP request to test the case of `objectLayer` being set to `nil`.
// There is no need to use an existing bucket or valid input for creating the request,
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
// Indicating that all parts are uploaded and initiating completeMultipartUpload.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
nilReq , err := newTestSignedRequestV4 ( "POST" , getCompleteMultipartUploadURL ( "" , nilBucket , nilObject , "dummy-uploadID" ) ,
0 , nil , "" , "" )
if err != nil {
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t . Errorf ( "Minio %s: Failed to create HTTP request for testing the response when object Layer is set to `nil`." , instanceType )
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}
// execute the object layer set to `nil` test.
// `ExecObjectLayerAPINilTest` manages the operation.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
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}
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// The UploadID from the response body is parsed and its existence is asserted with an attempt to ListParts using it.
func TestAPIAbortMultipartHandler ( t * testing . T ) {
defer DetectTestLeak ( t ) ( )
ExecObjectLayerAPITest ( t , testAPIAbortMultipartHandler , [ ] string { "AbortMultipart" } )
}
func testAPIAbortMultipartHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
credentials credential , t * testing . T ) {
var err error
// register event notifier.
err = initEventNotifier ( obj )
if err != nil {
t . Fatal ( "Notifier initialization failed." )
}
// object used for the test.
objectName := "test-object-new-multipart"
// uploadID obtained from NewMultipart upload.
var uploadID string
// upload IDs collected.
var uploadIDs [ ] string
for i := 0 ; i < 2 ; i ++ {
// initiate new multipart uploadID.
uploadID , err = obj . NewMultipartUpload ( bucketName , objectName , nil )
if err != nil {
// Failed to create NewMultipartUpload, abort.
t . Fatalf ( "Minio %s : <ERROR> %s" , instanceType , err )
}
uploadIDs = append ( uploadIDs , uploadID )
}
// Parts with size greater than 5 MB.
// Generating a 6MB byte array.
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validPart := bytes . Repeat ( [ ] byte ( "abcdef" ) , 1 * humanize . MiByte )
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validPartMD5 := getMD5Hash ( validPart )
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// Create multipart parts.
// Need parts to be uploaded before AbortMultiPartUpload can be called tested.
parts := [ ] struct {
bucketName string
objName string
uploadID string
PartID int
inputReaderData string
inputMd5 string
intputDataSize int64
} {
// Case 1-4.
// Creating sequence of parts for same uploadID.
{ bucketName , objectName , uploadIDs [ 0 ] , 1 , "abcd" , "e2fc714c4727ee9395f324cd2e7f331f" , int64 ( len ( "abcd" ) ) } ,
{ bucketName , objectName , uploadIDs [ 0 ] , 2 , "efgh" , "1f7690ebdd9b4caf8fab49ca1757bf27" , int64 ( len ( "efgh" ) ) } ,
{ bucketName , objectName , uploadIDs [ 0 ] , 3 , "ijkl" , "09a0877d04abf8759f99adec02baf579" , int64 ( len ( "abcd" ) ) } ,
{ bucketName , objectName , uploadIDs [ 0 ] , 4 , "mnop" , "e132e96a5ddad6da8b07bba6f6131fef" , int64 ( len ( "abcd" ) ) } ,
// Part with size larger than 5Mb.
{ bucketName , objectName , uploadIDs [ 0 ] , 5 , string ( validPart ) , validPartMD5 , int64 ( len ( string ( validPart ) ) ) } ,
{ bucketName , objectName , uploadIDs [ 0 ] , 6 , string ( validPart ) , validPartMD5 , int64 ( len ( string ( validPart ) ) ) } ,
// Part with size larger than 5Mb.
// Parts uploaded for anonymous/unsigned API handler test.
{ bucketName , objectName , uploadIDs [ 1 ] , 1 , string ( validPart ) , validPartMD5 , int64 ( len ( string ( validPart ) ) ) } ,
{ bucketName , objectName , uploadIDs [ 1 ] , 2 , string ( validPart ) , validPartMD5 , int64 ( len ( string ( validPart ) ) ) } ,
}
// Iterating over createPartCases to generate multipart chunks.
for _ , part := range parts {
_ , err = obj . PutObjectPart ( part . bucketName , part . objName , part . uploadID , part . PartID , part . intputDataSize ,
bytes . NewBufferString ( part . inputReaderData ) , part . inputMd5 , "" )
if err != nil {
t . Fatalf ( "%s : %s" , instanceType , err )
}
}
testCases := [ ] struct {
bucket string
object string
uploadID string
accessKey string
secretKey string
// Expected HTTP Response status.
expectedRespStatus int
} {
// Test case - 1.
// Abort existing upload ID.
{
bucket : bucketName ,
object : objectName ,
uploadID : uploadIDs [ 0 ] ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusNoContent ,
} ,
// Test case - 2.
// Abort non-existng upload ID.
{
bucket : bucketName ,
object : objectName ,
uploadID : "nonexistent-upload-id" ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusNotFound ,
} ,
// Test case - 3.
// Abort with unknown Access key.
{
bucket : bucketName ,
object : objectName ,
uploadID : uploadIDs [ 0 ] ,
accessKey : "Invalid-AccessID" ,
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secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusForbidden ,
} ,
}
for i , testCase := range testCases {
var req * http . Request
// Indicating that all parts are uploaded and initiating abortMultipartUpload.
req , err = newTestSignedRequestV4 ( "DELETE" , getAbortMultipartUploadURL ( "" , testCase . bucket , testCase . object , testCase . uploadID ) ,
0 , nil , testCase . accessKey , testCase . secretKey )
if err != nil {
t . Fatalf ( "Failed to create HTTP request for AbortMultipartUpload: <ERROR> %v" , err )
}
rec := httptest . NewRecorder ( )
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to executes the registered handler.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != testCase . expectedRespStatus {
t . Errorf ( "Case %d: Minio %s: Expected the response status to be `%d`, but instead found `%d`" , i + 1 , instanceType , testCase . expectedRespStatus , rec . Code )
}
}
// create unsigned HTTP request for Abort multipart upload.
anonReq , err := newTestRequest ( "DELETE" , getAbortMultipartUploadURL ( "" , bucketName , objectName , uploadIDs [ 1 ] ) ,
0 , nil )
if err != nil {
t . Fatalf ( "Minio %s: Failed to create an anonymous request for %s/%s: <ERROR> %v" ,
instanceType , bucketName , objectName , err )
}
// ExecObjectLayerAPIAnonTest - Calls the HTTP API handler using the anonymous request, validates the ErrAccessDeniedResponse,
// sets the bucket policy using the policy statement generated from `getWriteOnlyObjectStatement` so that the
// unsigned request goes through and its validated again.
ExecObjectLayerAPIAnonTest ( t , "TestAPIAbortMultipartHandler" , bucketName , objectName , instanceType ,
apiRouter , anonReq , getWriteOnlyObjectStatement )
// HTTP request to test the case of `objectLayer` being set to `nil`.
// There is no need to use an existing bucket or valid input for creating the request,
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
// Indicating that all parts are uploaded and initiating abortMultipartUpload.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
nilReq , err := newTestSignedRequestV4 ( "DELETE" , getAbortMultipartUploadURL ( "" , nilBucket , nilObject , "dummy-uploadID" ) ,
0 , nil , "" , "" )
if err != nil {
t . Errorf ( "Minio %s: Failed to create HTTP request for testing the response when object Layer is set to `nil`." , instanceType )
}
// execute the object layer set to `nil` test.
// `ExecObjectLayerAPINilTest` manages the operation.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
}
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// Wrapper for calling Delete Object API handler tests for both XL multiple disks and FS single drive setup.
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func TestAPIDeleteObjectHandler ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPIDeleteObjectHandler , [ ] string { "DeleteObject" } )
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}
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func testAPIDeleteObjectHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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// register event notifier.
err := initEventNotifier ( obj )
if err != nil {
t . Fatal ( "Notifier initialization failed." )
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}
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objectName := "test-object"
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// Object used for anonymous API request test.
anonObjectName := "test-anon-obj"
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// set of byte data for PutObject.
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// object has to be created before running tests for Deleting the object.
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bytesData := [ ] struct {
byteData [ ] byte
} {
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{ generateBytesData ( 6 * humanize . MiByte ) } ,
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}
// set of inputs for uploading the objects before tests for deleting them is done.
putObjectInputs := [ ] struct {
bucketName string
objectName string
contentLength int64
textData [ ] byte
metaData map [ string ] string
} {
// case - 1.
{ bucketName , objectName , int64 ( len ( bytesData [ 0 ] . byteData ) ) , bytesData [ 0 ] . byteData , make ( map [ string ] string ) } ,
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// case - 2.
{ bucketName , anonObjectName , int64 ( len ( bytesData [ 0 ] . byteData ) ) , bytesData [ 0 ] . byteData , make ( map [ string ] string ) } ,
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}
// iterate through the above set of inputs and upload the object.
for i , input := range putObjectInputs {
// uploading the object.
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_ , err = obj . PutObject ( input . bucketName , input . objectName , input . contentLength , bytes . NewBuffer ( input . textData ) , input . metaData , "" )
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// if object upload fails stop the test.
if err != nil {
t . Fatalf ( "Put Object case %d: Error uploading object: <ERROR> %v" , i + 1 , err )
}
}
// test cases with inputs and expected result for DeleteObject.
testCases := [ ] struct {
bucketName string
objectName string
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accessKey string
secretKey string
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expectedRespStatus int // expected response status body.
} {
// Test case - 1.
// Deleting an existing object.
// Expected to return HTTP resposne status code 204.
{
bucketName : bucketName ,
objectName : objectName ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusNoContent ,
} ,
// Test case - 2.
// Attempt to delete an object which is already deleted.
// Still should return http response status 204.
{
bucketName : bucketName ,
objectName : objectName ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusNoContent ,
} ,
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// Test case - 3.
// Setting Invalid AccessKey to force signature check inside the handler to fail.
// Should return HTTP response status 403 forbidden.
{
bucketName : bucketName ,
objectName : objectName ,
accessKey : "Invalid-AccessKey" ,
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secretKey : credentials . SecretKey ,
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expectedRespStatus : http . StatusForbidden ,
} ,
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}
// Iterating over the cases, call DeleteObjectHandler and validate the HTTP response.
for i , testCase := range testCases {
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var req , reqV2 * http . Request
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// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
rec := httptest . NewRecorder ( )
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// construct HTTP request for Delete Object end point.
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req , err = newTestSignedRequestV4 ( "DELETE" , getDeleteObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
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0 , nil , testCase . accessKey , testCase . secretKey )
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if err != nil {
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t . Fatalf ( "Test %d: Failed to create HTTP request for Delete Object: <ERROR> %v" , i + 1 , err )
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}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler,`func (api objectAPIHandlers) DeleteObjectHandler` handles the request.
apiRouter . ServeHTTP ( rec , req )
// Assert the response code with the expected status.
if rec . Code != testCase . expectedRespStatus {
t . Fatalf ( "Minio %s: Case %d: Expected the response status to be `%d`, but instead found `%d`" , instanceType , i + 1 , testCase . expectedRespStatus , rec . Code )
}
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// Verify response of the V2 signed HTTP request.
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
recV2 := httptest . NewRecorder ( )
// construct HTTP request for Delete Object endpoint.
reqV2 , err = newTestSignedRequestV2 ( "DELETE" , getDeleteObjectURL ( "" , testCase . bucketName , testCase . objectName ) ,
0 , nil , testCase . accessKey , testCase . secretKey )
if err != nil {
t . Fatalf ( "Failed to create HTTP request for NewMultipart Request: <ERROR> %v" , err )
}
// Since `apiRouter` satisfies `http.Handler` it has a ServeHTTP to execute the logic of the handler.
// Call the ServeHTTP to execute the handler.
apiRouter . ServeHTTP ( recV2 , reqV2 )
// Assert the response code with the expected status.
if recV2 . Code != testCase . expectedRespStatus {
t . Errorf ( "Case %d: Minio %s: Expected the response status to be `%d`, but instead found `%d`" , i + 1 ,
instanceType , testCase . expectedRespStatus , recV2 . Code )
}
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}
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// Test for Anonymous/unsigned http request.
anonReq , err := newTestRequest ( "DELETE" , getDeleteObjectURL ( "" , bucketName , anonObjectName ) , 0 , nil )
if err != nil {
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t . Fatalf ( "Minio %s: Failed to create an anonymous request for %s/%s: <ERROR> %v" ,
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instanceType , bucketName , anonObjectName , err )
}
// ExecObjectLayerAPIAnonTest - Calls the HTTP API handler using the anonymous request, validates the ErrAccessDeniedResponse,
// sets the bucket policy using the policy statement generated from `getWriteOnlyObjectStatement` so that the
// unsigned request goes through and its validated again.
ExecObjectLayerAPIAnonTest ( t , "TestAPIDeleteObjectHandler" , bucketName , anonObjectName , instanceType , apiRouter , anonReq , getWriteOnlyObjectStatement )
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// HTTP request to test the case of `objectLayer` being set to `nil`.
// There is no need to use an existing bucket or valid input for creating the request,
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
nilReq , err := newTestSignedRequestV4 ( "DELETE" , getDeleteObjectURL ( "" , nilBucket , nilObject ) ,
0 , nil , "" , "" )
if err != nil {
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t . Errorf ( "Minio %s: Failed to create HTTP request for testing the response when object Layer is set to `nil`." , instanceType )
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}
// execute the object layer set to `nil` test.
// `ExecObjectLayerAPINilTest` manages the operation.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
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}
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// TestAPIPutObjectPartHandlerPreSign - Tests validate the response of PutObjectPart HTTP handler
// when the request signature type is PreSign.
func TestAPIPutObjectPartHandlerPreSign ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPIPutObjectPartHandlerPreSign , [ ] string { "NewMultipart" , "PutObjectPart" } )
}
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func testAPIPutObjectPartHandlerPreSign ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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testObject := "testobject"
rec := httptest . NewRecorder ( )
req , err := newTestSignedRequestV4 ( "POST" , getNewMultipartURL ( "" , bucketName , "testobject" ) ,
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0 , nil , credentials . AccessKey , credentials . SecretKey )
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if err != nil {
t . Fatalf ( "[%s] - Failed to create a signed request to initiate multipart upload for %s/%s: <ERROR> %v" ,
instanceType , bucketName , testObject , err )
}
apiRouter . ServeHTTP ( rec , req )
// Get uploadID of the mulitpart upload initiated.
var mpartResp InitiateMultipartUploadResponse
mpartRespBytes , err := ioutil . ReadAll ( rec . Result ( ) . Body )
if err != nil {
t . Fatalf ( "[%s] Failed to read NewMultipartUpload response <ERROR> %v" , instanceType , err )
}
err = xml . Unmarshal ( mpartRespBytes , & mpartResp )
if err != nil {
t . Fatalf ( "[%s] Failed to unmarshal NewMultipartUpload response <ERROR> %v" , instanceType , err )
}
rec = httptest . NewRecorder ( )
req , err = newTestRequest ( "PUT" , getPutObjectPartURL ( "" , bucketName , testObject , mpartResp . UploadID , "1" ) ,
int64 ( len ( "hello" ) ) , bytes . NewReader ( [ ] byte ( "hello" ) ) )
if err != nil {
t . Fatalf ( "[%s] - Failed to create an unsigned request to put object part for %s/%s <ERROR> %v" ,
instanceType , bucketName , testObject , err )
}
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err = preSignV2 ( req , credentials . AccessKey , credentials . SecretKey , int64 ( 10 * 60 * 60 ) )
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if err != nil {
t . Fatalf ( "[%s] - Failed to presign an unsigned request to put object part for %s/%s <ERROR> %v" ,
instanceType , bucketName , testObject , err )
}
apiRouter . ServeHTTP ( rec , req )
if rec . Code != http . StatusOK {
t . Errorf ( "Test %d %s expected to succeed but failed with HTTP status code %d" , 1 , instanceType , rec . Code )
}
rec = httptest . NewRecorder ( )
req , err = newTestRequest ( "PUT" , getPutObjectPartURL ( "" , bucketName , testObject , mpartResp . UploadID , "1" ) ,
int64 ( len ( "hello" ) ) , bytes . NewReader ( [ ] byte ( "hello" ) ) )
if err != nil {
t . Fatalf ( "[%s] - Failed to create an unsigned request to put object part for %s/%s <ERROR> %v" ,
instanceType , bucketName , testObject , err )
}
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err = preSignV4 ( req , credentials . AccessKey , credentials . SecretKey , int64 ( 10 * 60 * 60 ) )
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if err != nil {
t . Fatalf ( "[%s] - Failed to presign an unsigned request to put object part for %s/%s <ERROR> %v" ,
instanceType , bucketName , testObject , err )
}
apiRouter . ServeHTTP ( rec , req )
if rec . Code != http . StatusOK {
t . Errorf ( "Test %d %s expected to succeed but failed with HTTP status code %d" , 1 , instanceType , rec . Code )
}
}
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// TestAPIPutObjectPartHandlerStreaming - Tests validate the response of PutObjectPart HTTP handler
// when the request signature type is `streaming signature`.
func TestAPIPutObjectPartHandlerStreaming ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPIPutObjectPartHandlerStreaming , [ ] string { "NewMultipart" , "PutObjectPart" } )
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}
func testAPIPutObjectPartHandlerStreaming ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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testObject := "testobject"
rec := httptest . NewRecorder ( )
req , err := newTestSignedRequestV4 ( "POST" , getNewMultipartURL ( "" , bucketName , "testobject" ) ,
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0 , nil , credentials . AccessKey , credentials . SecretKey )
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if err != nil {
t . Fatalf ( "[%s] - Failed to create a signed request to initiate multipart upload for %s/%s: <ERROR> %v" ,
instanceType , bucketName , testObject , err )
}
apiRouter . ServeHTTP ( rec , req )
// Get uploadID of the mulitpart upload initiated.
var mpartResp InitiateMultipartUploadResponse
mpartRespBytes , err := ioutil . ReadAll ( rec . Result ( ) . Body )
if err != nil {
t . Fatalf ( "[%s] Failed to read NewMultipartUpload response <ERROR> %v" , instanceType , err )
}
err = xml . Unmarshal ( mpartRespBytes , & mpartResp )
if err != nil {
t . Fatalf ( "[%s] Failed to unmarshal NewMultipartUpload response <ERROR> %v" , instanceType , err )
}
noAPIErr := APIError { }
missingDateHeaderErr := getAPIError ( ErrMissingDateHeader )
internalErr := getAPIError ( ErrInternalError )
testCases := [ ] struct {
fault Fault
expectedErr APIError
} {
{ BadSignature , missingDateHeaderErr } ,
{ None , noAPIErr } ,
{ TooBigDecodedLength , internalErr } ,
}
for i , test := range testCases {
rec = httptest . NewRecorder ( )
req , err = newTestStreamingSignedRequest ( "PUT" ,
getPutObjectPartURL ( "" , bucketName , testObject , mpartResp . UploadID , "1" ) ,
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5 , 1 , bytes . NewReader ( [ ] byte ( "hello" ) ) , credentials . AccessKey , credentials . SecretKey )
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if err != nil {
t . Fatalf ( "Failed to create new streaming signed HTTP request: <ERROR> %v." , err )
}
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switch test . fault {
case BadSignature :
// Reset date field in header to make streaming signature fail.
req . Header . Set ( "x-amz-date" , "" )
case TooBigDecodedLength :
// Set decoded length to a large value out of int64 range to simulate parse failure.
req . Header . Set ( "x-amz-decoded-content-length" , "9999999999999999999999" )
}
apiRouter . ServeHTTP ( rec , req )
if test . expectedErr != noAPIErr {
errBytes , err := ioutil . ReadAll ( rec . Result ( ) . Body )
if err != nil {
t . Fatalf ( "Test %d %s Failed to read error response from upload part request %s/%s: <ERROR> %v" ,
i + 1 , instanceType , bucketName , testObject , err )
}
var errXML APIErrorResponse
err = xml . Unmarshal ( errBytes , & errXML )
if err != nil {
t . Fatalf ( "Test %d %s Failed to unmarshal error response from upload part request %s/%s: <ERROR> %v" ,
i + 1 , instanceType , bucketName , testObject , err )
}
if test . expectedErr . Code != errXML . Code {
t . Errorf ( "Test %d %s expected to fail with error %s, but received %s" , i + 1 , instanceType ,
test . expectedErr . Code , errXML . Code )
}
} else {
if rec . Code != http . StatusOK {
t . Errorf ( "Test %d %s expected to succeed, but failed with HTTP status code %d" ,
i + 1 , instanceType , rec . Code )
}
}
}
}
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// TestAPIPutObjectPartHandler - Tests validate the response of PutObjectPart HTTP handler
// for variety of inputs.
func TestAPIPutObjectPartHandler ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPIPutObjectPartHandler , [ ] string { "PutObjectPart" } )
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}
func testAPIPutObjectPartHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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// Initiate Multipart upload for testing PutObjectPartHandler.
testObject := "testobject"
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// PutObjectPart API HTTP Handler has to be tested in isolation,
// that is without any other handler being registered,
// That's why NewMultipartUpload is initiated using ObjectLayer.
uploadID , err := obj . NewMultipartUpload ( bucketName , testObject , nil )
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if err != nil {
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// Failed to create NewMultipartUpload, abort.
t . Fatalf ( "Minio %s : <ERROR> %s" , instanceType , err )
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}
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uploadIDCopy := uploadID
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// expected error types for invalid inputs to PutObjectPartHandler.
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noAPIErr := APIError { }
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// expected error when content length is missing in the HTTP request.
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missingContent := getAPIError ( ErrMissingContentLength )
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// expected error when content length is too large.
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entityTooLarge := getAPIError ( ErrEntityTooLarge )
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// expected error when the signature check fails.
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badSigning := getAPIError ( ErrSignatureDoesNotMatch )
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// expected error MD5 sum mismatch occurs.
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badChecksum := getAPIError ( ErrInvalidDigest )
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// expected error when the part number in the request is invalid.
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invalidPart := getAPIError ( ErrInvalidPart )
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// expected error when maxPart is beyond the limit.
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invalidMaxParts := getAPIError ( ErrInvalidMaxParts )
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// expected error the when the uploadID is invalid.
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noSuchUploadID := getAPIError ( ErrNoSuchUpload )
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// expected error when InvalidAccessID is set.
invalidAccessID := getAPIError ( ErrInvalidAccessKeyID )
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// SignatureMismatch for various signing types
testCases := [ ] struct {
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objectName string
reader io . ReadSeeker
partNumber string
fault Fault
accessKey string
secretKey string
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expectedAPIError APIError
} {
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// Test case - 1.
// Success case.
{
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objectName : testObject ,
reader : bytes . NewReader ( [ ] byte ( "hello" ) ) ,
partNumber : "1" ,
fault : None ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedAPIError : noAPIErr ,
} ,
// Test case - 2.
// Case where part number is invalid.
{
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objectName : testObject ,
reader : bytes . NewReader ( [ ] byte ( "hello" ) ) ,
partNumber : "9999999999999999999" ,
fault : None ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedAPIError : invalidPart ,
} ,
// Test case - 3.
// Case where the part number has exceeded the max allowed parts in an upload.
{
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objectName : testObject ,
reader : bytes . NewReader ( [ ] byte ( "hello" ) ) ,
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partNumber : strconv . Itoa ( globalMaxPartID + 1 ) ,
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fault : None ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedAPIError : invalidMaxParts ,
} ,
// Test case - 4.
// Case where the content length is not set in the HTTP request.
{
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objectName : testObject ,
reader : bytes . NewReader ( [ ] byte ( "hello" ) ) ,
partNumber : "1" ,
fault : MissingContentLength ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedAPIError : missingContent ,
} ,
// Test case - 5.
// case where the object size is set to a value greater than the max allowed size.
{
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objectName : testObject ,
reader : bytes . NewReader ( [ ] byte ( "hello" ) ) ,
partNumber : "1" ,
fault : TooBigObject ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedAPIError : entityTooLarge ,
} ,
// Test case - 6.
// case where a signature mismatch is introduced and the response is validated.
{
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objectName : testObject ,
reader : bytes . NewReader ( [ ] byte ( "hello" ) ) ,
partNumber : "1" ,
fault : BadSignature ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedAPIError : badSigning ,
} ,
// Test case - 7.
// Case where incorrect checksum is set and the error response
// is asserted with the expected error response.
{
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objectName : testObject ,
reader : bytes . NewReader ( [ ] byte ( "hello" ) ) ,
partNumber : "1" ,
fault : BadMD5 ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedAPIError : badChecksum ,
} ,
// Test case - 8.
// case where the a non-existent uploadID is set.
{
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objectName : testObject ,
reader : bytes . NewReader ( [ ] byte ( "hello" ) ) ,
partNumber : "1" ,
fault : MissingUploadID ,
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accessKey : credentials . AccessKey ,
secretKey : credentials . SecretKey ,
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expectedAPIError : noSuchUploadID ,
} ,
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// Test case - 9.
// case with invalid AccessID.
// Forcing the signature check inside the handler to fail.
{
objectName : testObject ,
reader : bytes . NewReader ( [ ] byte ( "hello" ) ) ,
partNumber : "1" ,
fault : None ,
accessKey : "Invalid-AccessID" ,
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secretKey : credentials . SecretKey ,
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expectedAPIError : invalidAccessID ,
} ,
}
reqV2Str := "V2 Signed HTTP request"
reqV4Str := "V4 Signed HTTP request"
// collection of input HTTP request, ResponseRecorder and request type.
// Used to make a collection of V4 and V4 HTTP request.
type inputReqRec struct {
req * http . Request
rec * httptest . ResponseRecorder
reqType string
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}
for i , test := range testCases {
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// Using sub-tests introduced in Go 1.7.
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t . Run ( fmt . Sprintf ( "Minio %s : Test case %d." , instanceType , i + 1 ) , func ( t * testing . T ) {
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var reqV4 , reqV2 * http . Request
var recV4 , recV2 * httptest . ResponseRecorder
// initialize HTTP NewRecorder, this records any mutations to response writer inside the handler.
recV4 = httptest . NewRecorder ( )
recV2 = httptest . NewRecorder ( )
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// setting a non-existent uploadID.
// deliberately introducing the invalid value to be able to assert the response with the expected error response.
if test . fault == MissingUploadID {
uploadID = "upload1"
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}
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// constructing a v4 signed HTTP request.
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reqV4 , err = newTestSignedRequestV4 ( "PUT" ,
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getPutObjectPartURL ( "" , bucketName , test . objectName , uploadID , test . partNumber ) ,
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0 , test . reader , test . accessKey , test . secretKey )
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if err != nil {
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t . Fatalf ( "Failed to create a signed V4 request to upload part for %s/%s: <ERROR> %v" ,
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bucketName , test . objectName , err )
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}
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// Verify response of the V2 signed HTTP request.
// construct HTTP request for PutObject Part Object endpoint.
reqV2 , err = newTestSignedRequestV2 ( "PUT" ,
getPutObjectPartURL ( "" , bucketName , test . objectName , uploadID , test . partNumber ) ,
0 , test . reader , test . accessKey , test . secretKey )
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if err != nil {
t . Fatalf ( "Test %d %s Failed to create a V2 signed request to upload part for %s/%s: <ERROR> %v" , i + 1 , instanceType ,
bucketName , test . objectName , err )
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}
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// collection of input HTTP request, ResponseRecorder and request type.
reqRecs := [ ] inputReqRec {
{
req : reqV4 ,
rec : recV4 ,
reqType : reqV4Str ,
} ,
{
req : reqV2 ,
rec : recV2 ,
reqType : reqV2Str ,
} ,
}
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for _ , reqRec := range reqRecs {
// Response recorder to record the response of the handler.
rec := reqRec . rec
// HTTP request used to call the handler.
req := reqRec . req
// HTTP request type string for V4/V2 requests.
reqType := reqRec . reqType
// introduce faults in the request.
// deliberately introducing the invalid value to be able to assert the response with the expected error response.
switch test . fault {
case MissingContentLength :
req . ContentLength = - 1
// Setting the content length to a value greater than the max allowed size of a part.
// Used in test case 4.
case TooBigObject :
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req . ContentLength = globalMaxObjectSize + 1
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// Malformed signature.
// Used in test case 6.
case BadSignature :
req . Header . Set ( "authorization" , req . Header . Get ( "authorization" ) + "a" )
// Setting an invalid Content-MD5 to force a Md5 Mismatch error.
// Used in tesr case 7.
case BadMD5 :
req . Header . Set ( "Content-MD5" , "badmd5" )
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}
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// invoke the PutObjectPart HTTP handler.
apiRouter . ServeHTTP ( rec , req )
// validate the error response.
if test . expectedAPIError != noAPIErr {
var errBytes [ ] byte
// read the response body.
errBytes , err = ioutil . ReadAll ( rec . Result ( ) . Body )
if err != nil {
t . Fatalf ( "%s, Failed to read error response from upload part request \"%s\"/\"%s\": <ERROR> %v." ,
reqType , bucketName , test . objectName , err )
}
// parse the XML error response.
var errXML APIErrorResponse
err = xml . Unmarshal ( errBytes , & errXML )
if err != nil {
t . Fatalf ( "%s, Failed to unmarshal error response from upload part request \"%s\"/\"%s\": <ERROR> %v." ,
reqType , bucketName , test . objectName , err )
}
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// Validate whether the error has occurred for the expected reason.
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if test . expectedAPIError . Code != errXML . Code {
t . Errorf ( "%s, Expected to fail with error \"%s\", but received \"%s\"." ,
reqType , test . expectedAPIError . Code , errXML . Code )
}
// Validate the HTTP response status code with the expected one.
if test . expectedAPIError . HTTPStatusCode != rec . Code {
t . Errorf ( "%s, Expected the HTTP response status code to be %d, got %d." , reqType , test . expectedAPIError . HTTPStatusCode , rec . Code )
}
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}
}
} )
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}
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// Test for Anonymous/unsigned http request.
anonReq , err := newTestRequest ( "PUT" , getPutObjectPartURL ( "" , bucketName , testObject , uploadIDCopy , "1" ) ,
int64 ( len ( "hello" ) ) , bytes . NewReader ( [ ] byte ( "hello" ) ) )
if err != nil {
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t . Fatalf ( "Minio %s: Failed to create an anonymous request for %s/%s: <ERROR> %v" ,
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instanceType , bucketName , testObject , err )
}
// ExecObjectLayerAPIAnonTest - Calls the HTTP API handler using the anonymous request, validates the ErrAccessDeniedResponse,
// sets the bucket policy using the policy statement generated from `getWriteOnlyObjectStatement` so that the
// unsigned request goes through and its validated again.
ExecObjectLayerAPIAnonTest ( t , "TestAPIPutObjectPartHandler" , bucketName , testObject , instanceType , apiRouter , anonReq , getWriteOnlyObjectStatement )
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// HTTP request for testing when `ObjectLayer` is set to `nil`.
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// There is no need to use an existing bucket and valid input for creating the request
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
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nilReq , err := newTestSignedRequestV4 ( "PUT" , getPutObjectPartURL ( "" , nilBucket , nilObject , "0" , "0" ) ,
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0 , bytes . NewReader ( [ ] byte ( "testNilObjLayer" ) ) , "" , "" )
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if err != nil {
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t . Errorf ( "Minio %s: Failed to create http request for testing the response when object Layer is set to `nil`." , instanceType )
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}
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// execute the object layer set to `nil` test.
// `ExecObjectLayerAPINilTest` manages the operation.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
}
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// TestAPIListObjectPartsHandlerPreSign - Tests validate the response of ListObjectParts HTTP handler
// when signature type of the HTTP request is `Presigned`.
func TestAPIListObjectPartsHandlerPreSign ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPIListObjectPartsHandlerPreSign ,
[ ] string { "PutObjectPart" , "NewMultipart" , "ListObjectParts" } )
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}
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func testAPIListObjectPartsHandlerPreSign ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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testObject := "testobject"
rec := httptest . NewRecorder ( )
req , err := newTestSignedRequestV4 ( "POST" , getNewMultipartURL ( "" , bucketName , testObject ) ,
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0 , nil , credentials . AccessKey , credentials . SecretKey )
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if err != nil {
t . Fatalf ( "[%s] - Failed to create a signed request to initiate multipart upload for %s/%s: <ERROR> %v" ,
instanceType , bucketName , testObject , err )
}
apiRouter . ServeHTTP ( rec , req )
// Get uploadID of the mulitpart upload initiated.
var mpartResp InitiateMultipartUploadResponse
mpartRespBytes , err := ioutil . ReadAll ( rec . Result ( ) . Body )
if err != nil {
t . Fatalf ( "[%s] Failed to read NewMultipartUpload response <ERROR> %v" , instanceType , err )
}
err = xml . Unmarshal ( mpartRespBytes , & mpartResp )
if err != nil {
t . Fatalf ( "[%s] Failed to unmarshal NewMultipartUpload response <ERROR> %v" , instanceType , err )
}
// Upload a part for listing purposes.
rec = httptest . NewRecorder ( )
req , err = newTestSignedRequestV4 ( "PUT" ,
getPutObjectPartURL ( "" , bucketName , testObject , mpartResp . UploadID , "1" ) ,
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int64 ( len ( "hello" ) ) , bytes . NewReader ( [ ] byte ( "hello" ) ) , credentials . AccessKey , credentials . SecretKey )
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if err != nil {
t . Fatalf ( "[%s] - Failed to create a signed request to initiate multipart upload for %s/%s: <ERROR> %v" ,
instanceType , bucketName , testObject , err )
}
apiRouter . ServeHTTP ( rec , req )
if rec . Code != http . StatusOK {
t . Fatalf ( "[%s] - Failed to PutObjectPart bucket: %s object: %s HTTP status code: %d" ,
instanceType , bucketName , testObject , rec . Code )
}
rec = httptest . NewRecorder ( )
req , err = newTestRequest ( "GET" ,
getListMultipartURLWithParams ( "" , bucketName , testObject , mpartResp . UploadID , "" , "" , "" ) ,
0 , nil )
if err != nil {
t . Fatalf ( "[%s] - Failed to create an unsigned request to list object parts for bucket %s, uploadId %s" ,
instanceType , bucketName , mpartResp . UploadID )
}
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err = preSignV2 ( req , credentials . AccessKey , credentials . SecretKey , int64 ( 10 * 60 * 60 ) )
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if err != nil {
t . Fatalf ( "[%s] - Failed to presignV2 an unsigned request to list object parts for bucket %s, uploadId %s" ,
instanceType , bucketName , mpartResp . UploadID )
}
apiRouter . ServeHTTP ( rec , req )
if rec . Code != http . StatusOK {
t . Errorf ( "Test %d %s expected to succeed but failed with HTTP status code %d" ,
1 , instanceType , rec . Code )
}
rec = httptest . NewRecorder ( )
req , err = newTestRequest ( "GET" ,
getListMultipartURLWithParams ( "" , bucketName , testObject , mpartResp . UploadID , "" , "" , "" ) ,
0 , nil )
if err != nil {
t . Fatalf ( "[%s] - Failed to create an unsigned request to list object parts for bucket %s, uploadId %s" ,
instanceType , bucketName , mpartResp . UploadID )
}
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err = preSignV4 ( req , credentials . AccessKey , credentials . SecretKey , int64 ( 10 * 60 * 60 ) )
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if err != nil {
t . Fatalf ( "[%s] - Failed to presignV2 an unsigned request to list object parts for bucket %s, uploadId %s" ,
instanceType , bucketName , mpartResp . UploadID )
}
apiRouter . ServeHTTP ( rec , req )
if rec . Code != http . StatusOK {
t . Errorf ( "Test %d %s expected to succeed but failed with HTTP status code %d" ,
1 , instanceType , rec . Code )
}
}
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// TestAPIListObjectPartsHandler - Tests validate the response of ListObjectParts HTTP handler
// for variety of success/failure cases.
func TestAPIListObjectPartsHandler ( t * testing . T ) {
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defer DetectTestLeak ( t ) ( )
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ExecObjectLayerAPITest ( t , testAPIListObjectPartsHandler , [ ] string { "ListObjectParts" } )
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}
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func testAPIListObjectPartsHandler ( obj ObjectLayer , instanceType , bucketName string , apiRouter http . Handler ,
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credentials credential , t * testing . T ) {
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testObject := "testobject"
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// PutObjectPart API HTTP Handler has to be tested in isolation,
// that is without any other handler being registered,
// That's why NewMultipartUpload is initiated using ObjectLayer.
uploadID , err := obj . NewMultipartUpload ( bucketName , testObject , nil )
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if err != nil {
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// Failed to create NewMultipartUpload, abort.
t . Fatalf ( "Minio %s : <ERROR> %s" , instanceType , err )
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}
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uploadIDCopy := uploadID
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// create an object Part, will be used to test list object parts.
_ , err = obj . PutObjectPart ( bucketName , testObject , uploadID , 1 , int64 ( len ( "hello" ) ) , bytes . NewReader ( [ ] byte ( "hello" ) ) ,
"5d41402abc4b2a76b9719d911017c592" , "" )
if err != nil {
t . Fatalf ( "Minio %s : %s." , instanceType , err )
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}
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// expected error types for invalid inputs to ListObjectParts handler.
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noAPIErr := APIError { }
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// expected error when the signature check fails.
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signatureMismatchErr := getAPIError ( ErrSignatureDoesNotMatch )
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// expected error the when the uploadID is invalid.
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noSuchUploadErr := getAPIError ( ErrNoSuchUpload )
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// expected error the part number marker use in the ListObjectParts request is invalid.
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invalidPartMarkerErr := getAPIError ( ErrInvalidPartNumberMarker )
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// expected error when the maximum number of parts requested to listed in invalid.
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invalidMaxPartsErr := getAPIError ( ErrInvalidMaxParts )
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testCases := [ ] struct {
fault Fault
partNumberMarker string
maxParts string
expectedErr APIError
} {
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// Test case - 1.
// case where a signature mismatch is introduced and the response is validated.
{
fault : BadSignature ,
partNumberMarker : "" ,
maxParts : "" ,
expectedErr : signatureMismatchErr ,
} ,
// Test case - 2.
// Marker is set to invalid value of -1, error response is asserted.
{
fault : None ,
partNumberMarker : "-1" ,
maxParts : "" ,
expectedErr : invalidPartMarkerErr ,
} ,
// Test case - 3.
// Max Parts is set a negative value, error response is validated.
{
fault : None ,
partNumberMarker : "" ,
maxParts : "-1" ,
expectedErr : invalidMaxPartsErr ,
} ,
// Test case - 4.
// Invalid UploadID is set and the error response is validated.
{
fault : MissingUploadID ,
partNumberMarker : "" ,
maxParts : "" ,
expectedErr : noSuchUploadErr ,
} ,
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}
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// string to represent V2 signed HTTP request.
reqV2Str := "V2 Signed HTTP request"
// string to represent V4 signed HTTP request.
reqV4Str := "V4 Signed HTTP request"
// Collection of HTTP request and ResponseRecorder and request type string.
type inputReqRec struct {
req * http . Request
rec * httptest . ResponseRecorder
reqType string
}
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for i , test := range testCases {
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var reqV4 , reqV2 * http . Request
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// Using sub-tests introduced in Go 1.7.
t . Run ( fmt . Sprintf ( "Minio %s: Test case %d failed." , instanceType , i + 1 ) , func ( t * testing . T ) {
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recV2 := httptest . NewRecorder ( )
recV4 := httptest . NewRecorder ( )
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// setting a non-existent uploadID.
// deliberately introducing the invalid value to be able to assert the response with the expected error response.
if test . fault == MissingUploadID {
uploadID = "upload1"
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}
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// constructing a v4 signed HTTP request for ListMultipartUploads.
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reqV4 , err = newTestSignedRequestV4 ( "GET" ,
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getListMultipartURLWithParams ( "" , bucketName , testObject , uploadID , test . maxParts , test . partNumberMarker , "" ) ,
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0 , nil , credentials . AccessKey , credentials . SecretKey )
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if err != nil {
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t . Fatalf ( "Failed to create a V4 signed request to list object parts for %s/%s: <ERROR> %v." ,
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bucketName , testObject , err )
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}
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// Verify response of the V2 signed HTTP request.
// construct HTTP request for PutObject Part Object endpoint.
reqV2 , err = newTestSignedRequestV2 ( "GET" ,
getListMultipartURLWithParams ( "" , bucketName , testObject , uploadID , test . maxParts , test . partNumberMarker , "" ) ,
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0 , nil , credentials . AccessKey , credentials . SecretKey )
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if err != nil {
t . Fatalf ( "Failed to create a V2 signed request to list object parts for %s/%s: <ERROR> %v." ,
bucketName , testObject , err )
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}
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// collection of input HTTP request, ResponseRecorder and request type.
reqRecs := [ ] inputReqRec {
{
req : reqV4 ,
rec : recV4 ,
reqType : reqV4Str ,
} ,
{
req : reqV2 ,
rec : recV2 ,
reqType : reqV2Str ,
} ,
}
for _ , reqRec := range reqRecs {
// Response recorder to record the response of the handler.
rec := reqRec . rec
// HTTP request used to call the handler.
req := reqRec . req
// HTTP request type string for V4/V2 requests.
reqType := reqRec . reqType
// Malformed signature.
if test . fault == BadSignature {
req . Header . Set ( "authorization" , req . Header . Get ( "authorization" ) + "a" )
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}
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// invoke the PutObjectPart HTTP handler with the given HTTP request.
apiRouter . ServeHTTP ( rec , req )
// validate the error response.
if test . expectedErr != noAPIErr {
var errBytes [ ] byte
// read the response body.
errBytes , err = ioutil . ReadAll ( rec . Result ( ) . Body )
if err != nil {
t . Fatalf ( "%s,Failed to read error response list object parts request %s/%s: <ERROR> %v" , reqType , bucketName , testObject , err )
}
// parse the error response.
var errXML APIErrorResponse
err = xml . Unmarshal ( errBytes , & errXML )
if err != nil {
t . Fatalf ( "%s, Failed to unmarshal error response from list object partsest %s/%s: <ERROR> %v" ,
reqType , bucketName , testObject , err )
}
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// Validate whether the error has occurred for the expected reason.
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if test . expectedErr . Code != errXML . Code {
t . Errorf ( "%s, Expected to fail with %s but received %s" ,
reqType , test . expectedErr . Code , errXML . Code )
}
// in case error is not expected response status should be 200OK.
} else {
if rec . Code != http . StatusOK {
t . Errorf ( "%s, Expected to succeed with response HTTP status 200OK, but failed with HTTP status code %d." , reqType , rec . Code )
}
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}
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}
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} )
}
// Test for Anonymous/unsigned http request.
anonReq , err := newTestRequest ( "GET" ,
getListMultipartURLWithParams ( "" , bucketName , testObject , uploadIDCopy , "" , "" , "" ) , 0 , nil )
if err != nil {
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t . Fatalf ( "Minio %s: Failed to create an anonymous request for %s/%s: <ERROR> %v" ,
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instanceType , bucketName , testObject , err )
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}
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// ExecObjectLayerAPIAnonTest - Calls the HTTP API handler using the anonymous request, validates the ErrAccessDeniedResponse,
// sets the bucket policy using the policy statement generated from `getWriteOnlyObjectStatement` so that the
// unsigned request goes through and its validated again.
ExecObjectLayerAPIAnonTest ( t , "TestAPIListObjectPartsHandler" , bucketName , testObject , instanceType , apiRouter , anonReq , getWriteOnlyObjectStatement )
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// HTTP request for testing when `objectLayer` is set to `nil`.
// There is no need to use an existing bucket and valid input for creating the request
// since the `objectLayer==nil` check is performed before any other checks inside the handlers.
// The only aim is to generate an HTTP request in a way that the relevant/registered end point is evoked/called.
nilBucket := "dummy-bucket"
nilObject := "dummy-object"
nilReq , err := newTestSignedRequestV4 ( "GET" ,
getListMultipartURLWithParams ( "" , nilBucket , nilObject , "dummy-uploadID" , "0" , "0" , "" ) ,
0 , nil , "" , "" )
if err != nil {
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t . Errorf ( "Minio %s:Failed to create http request for testing the response when object Layer is set to `nil`." , instanceType )
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}
// execute the object layer set to `nil` test.
// `ExecObjectLayerAPINilTest` sets the Object Layer to `nil` and calls the handler.
ExecObjectLayerAPINilTest ( t , nilBucket , nilObject , instanceType , apiRouter , nilReq )
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}