7f2717b74a
* transit: change batch input format * transit: no json-in-json for batch response * docs: transit: update batch input format * transit: fix tests after changing response format
295 lines
8.2 KiB
Go
295 lines
8.2 KiB
Go
package transit
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import (
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"strings"
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"testing"
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"github.com/hashicorp/vault/logical"
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)
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// Check the normal flow of rewrap
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func TestTransit_BatchRewrapCase1(t *testing.T) {
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var resp *logical.Response
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var err error
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b, s := createBackendWithStorage(t)
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// Upsert the key and encrypt the data
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plaintext := "dGhlIHF1aWNrIGJyb3duIGZveA=="
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encData := map[string]interface{}{
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"plaintext": plaintext,
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}
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// Create a key and encrypt a plaintext
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encReq := &logical.Request{
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Operation: logical.CreateOperation,
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Path: "encrypt/upserted_key",
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Storage: s,
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Data: encData,
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}
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resp, err = b.HandleRequest(encReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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// Cache the ciphertext
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ciphertext := resp.Data["ciphertext"]
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if !strings.HasPrefix(ciphertext.(string), "vault:v1") {
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t.Fatalf("bad: ciphertext version: expected: 'vault:v1', actual: %s", ciphertext)
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}
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rewrapData := map[string]interface{}{
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"ciphertext": ciphertext,
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}
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// Read the policy and check if the latest version is 1
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policyReq := &logical.Request{
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Operation: logical.ReadOperation,
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Path: "keys/upserted_key",
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Storage: s,
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}
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resp, err = b.HandleRequest(policyReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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if resp.Data["latest_version"] != 1 {
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t.Fatalf("bad: latest_version: expected: 1, actual: %d", resp.Data["latest_version"])
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}
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rotateReq := &logical.Request{
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Operation: logical.UpdateOperation,
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Path: "keys/upserted_key/rotate",
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Storage: s,
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}
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resp, err = b.HandleRequest(rotateReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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// Read the policy again and the latest version is 2
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resp, err = b.HandleRequest(policyReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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if resp.Data["latest_version"] != 2 {
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t.Fatalf("bad: latest_version: expected: 2, actual: %d", resp.Data["latest_version"])
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}
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// Rewrap the ciphertext and check that they are different
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rewrapReq := &logical.Request{
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Operation: logical.UpdateOperation,
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Path: "rewrap/upserted_key",
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Storage: s,
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Data: rewrapData,
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}
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resp, err = b.HandleRequest(rewrapReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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if ciphertext.(string) == resp.Data["ciphertext"].(string) {
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t.Fatalf("bad: ciphertexts are same before and after rewrap")
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}
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if !strings.HasPrefix(resp.Data["ciphertext"].(string), "vault:v2") {
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t.Fatalf("bad: ciphertext version: expected: 'vault:v2', actual: %s", resp.Data["ciphertext"].(string))
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}
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}
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// Check the normal flow of rewrap with upserted key
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func TestTransit_BatchRewrapCase2(t *testing.T) {
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var resp *logical.Response
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var err error
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b, s := createBackendWithStorage(t)
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// Upsert the key and encrypt the data
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plaintext := "dGhlIHF1aWNrIGJyb3duIGZveA=="
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encData := map[string]interface{}{
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"plaintext": plaintext,
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"context": "dmlzaGFsCg==",
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}
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// Create a key and encrypt a plaintext
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encReq := &logical.Request{
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Operation: logical.CreateOperation,
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Path: "encrypt/upserted_key",
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Storage: s,
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Data: encData,
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}
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resp, err = b.HandleRequest(encReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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// Cache the ciphertext
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ciphertext := resp.Data["ciphertext"]
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if !strings.HasPrefix(ciphertext.(string), "vault:v1") {
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t.Fatalf("bad: ciphertext version: expected: 'vault:v1', actual: %s", ciphertext)
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}
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rewrapData := map[string]interface{}{
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"ciphertext": ciphertext,
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"context": "dmlzaGFsCg==",
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}
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// Read the policy and check if the latest version is 1
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policyReq := &logical.Request{
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Operation: logical.ReadOperation,
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Path: "keys/upserted_key",
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Storage: s,
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}
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resp, err = b.HandleRequest(policyReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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if resp.Data["latest_version"] != 1 {
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t.Fatalf("bad: latest_version: expected: 1, actual: %d", resp.Data["latest_version"])
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}
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rotateReq := &logical.Request{
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Operation: logical.UpdateOperation,
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Path: "keys/upserted_key/rotate",
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Storage: s,
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}
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resp, err = b.HandleRequest(rotateReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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// Read the policy again and the latest version is 2
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resp, err = b.HandleRequest(policyReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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if resp.Data["latest_version"] != 2 {
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t.Fatalf("bad: latest_version: expected: 2, actual: %d", resp.Data["latest_version"])
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}
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// Rewrap the ciphertext and check that they are different
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rewrapReq := &logical.Request{
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Operation: logical.UpdateOperation,
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Path: "rewrap/upserted_key",
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Storage: s,
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Data: rewrapData,
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}
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resp, err = b.HandleRequest(rewrapReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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if ciphertext.(string) == resp.Data["ciphertext"].(string) {
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t.Fatalf("bad: ciphertexts are same before and after rewrap")
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}
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if !strings.HasPrefix(resp.Data["ciphertext"].(string), "vault:v2") {
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t.Fatalf("bad: ciphertext version: expected: 'vault:v2', actual: %s", resp.Data["ciphertext"].(string))
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}
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}
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// Batch encrypt plaintexts, rotate the keys and rewrap all the ciphertexts
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func TestTransit_BatchRewrapCase3(t *testing.T) {
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var resp *logical.Response
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var err error
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b, s := createBackendWithStorage(t)
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batchEncryptionInput := []interface{}{
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map[string]interface{}{"plaintext": "dmlzaGFsCg=="},
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map[string]interface{}{"plaintext": "dGhlIHF1aWNrIGJyb3duIGZveA=="},
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}
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batchEncryptionData := map[string]interface{}{
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"batch_input": batchEncryptionInput,
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}
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batchReq := &logical.Request{
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Operation: logical.CreateOperation,
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Path: "encrypt/upserted_key",
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Storage: s,
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Data: batchEncryptionData,
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}
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resp, err = b.HandleRequest(batchReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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batchEncryptionResponseItems := resp.Data["batch_results"].([]BatchResponseItem)
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batchRewrapInput := make([]interface{}, len(batchEncryptionResponseItems))
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for i, item := range batchEncryptionResponseItems {
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batchRewrapInput[i] = map[string]interface{}{"ciphertext": item.Ciphertext}
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}
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batchRewrapData := map[string]interface{}{
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"batch_input": batchRewrapInput,
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}
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rotateReq := &logical.Request{
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Operation: logical.UpdateOperation,
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Path: "keys/upserted_key/rotate",
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Storage: s,
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}
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resp, err = b.HandleRequest(rotateReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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rewrapReq := &logical.Request{
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Operation: logical.UpdateOperation,
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Path: "rewrap/upserted_key",
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Storage: s,
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Data: batchRewrapData,
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}
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resp, err = b.HandleRequest(rewrapReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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batchRewrapResponseItems := resp.Data["batch_results"].([]BatchResponseItem)
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if len(batchRewrapResponseItems) != len(batchEncryptionResponseItems) {
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t.Fatalf("bad: length of input and output or rewrap are not matching; expected: %d, actual: %d", len(batchEncryptionResponseItems), len(batchRewrapResponseItems))
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}
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decReq := &logical.Request{
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Operation: logical.UpdateOperation,
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Path: "decrypt/upserted_key",
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Storage: s,
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}
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for i, eItem := range batchEncryptionResponseItems {
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rItem := batchRewrapResponseItems[i]
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if eItem.Ciphertext == rItem.Ciphertext {
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t.Fatalf("bad: rewrap input and output are the same")
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}
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if !strings.HasPrefix(rItem.Ciphertext, "vault:v2") {
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t.Fatalf("bad: invalid version of ciphertext in rewrap response; expected: 'vault:v2', actual: %s", rItem.Ciphertext)
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}
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decReq.Data = map[string]interface{}{
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"ciphertext": rItem.Ciphertext,
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}
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resp, err = b.HandleRequest(decReq)
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if err != nil || (resp != nil && resp.IsError()) {
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t.Fatalf("err:%v resp:%#v", err, resp)
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}
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plaintext1 := "dGhlIHF1aWNrIGJyb3duIGZveA=="
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plaintext2 := "dmlzaGFsCg=="
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if resp.Data["plaintext"] != plaintext1 && resp.Data["plaintext"] != plaintext2 {
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t.Fatalf("bad: plaintext. Expected: %q or %q, Actual: %q", plaintext1, plaintext2, resp.Data["plaintext"])
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}
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}
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}
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