mirror of https://github.com/status-im/consul.git
391 lines
9.5 KiB
Go
391 lines
9.5 KiB
Go
// Copyright (c) HashiCorp, Inc.
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// SPDX-License-Identifier: BUSL-1.1
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package ca
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import (
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"errors"
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"fmt"
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"io"
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"os"
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"os/exec"
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"strings"
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"sync"
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"github.com/hashicorp/go-hclog"
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"github.com/hashicorp/go-uuid"
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vaultapi "github.com/hashicorp/vault/api"
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"github.com/mitchellh/go-testing-interface"
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"github.com/stretchr/testify/require"
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"github.com/hashicorp/consul/agent/connect"
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"github.com/hashicorp/consul/sdk/freeport"
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"github.com/hashicorp/consul/sdk/testutil/retry"
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)
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// KeyTestCases is a list of the important CA key types that we should test
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// against when signing. For now leaf keys are always EC P256 but CA can be EC
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// (any NIST curve) or RSA (2048, 4096). Providers must be able to complete all
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// signing operations with both types that includes:
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// - Sign must be able to sign EC P256 leaf with all these types of CA key
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// - CrossSignCA must be able to sign all these types of new CA key with all
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// these types of old CA key.
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// - SignIntermediate muse bt able to sign all the types of secondary
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// intermediate CA key with all these types of primary CA key
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var KeyTestCases = []KeyTestCase{
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{
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Desc: "Default Key Type (EC 256)",
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KeyType: connect.DefaultPrivateKeyType,
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KeyBits: connect.DefaultPrivateKeyBits,
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},
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{
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Desc: "RSA 2048",
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KeyType: "rsa",
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KeyBits: 2048,
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},
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}
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type KeyTestCase struct {
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Desc string
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KeyType string
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KeyBits int
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}
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// CASigningKeyTypes is a struct with params for tests that sign one CA CSR with
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// another CA key.
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type CASigningKeyTypes struct {
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Desc string
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SigningKeyType string
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SigningKeyBits int
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CSRKeyType string
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CSRKeyBits int
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}
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type vaultRequirements struct {
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Enterprise bool
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}
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// CASigningKeyTypeCases returns the cross-product of the important supported CA
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// key types for generating table tests for CA signing tests (CrossSignCA and
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// SignIntermediate).
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func CASigningKeyTypeCases() []CASigningKeyTypes {
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cases := make([]CASigningKeyTypes, 0, len(KeyTestCases)*len(KeyTestCases))
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for _, outer := range KeyTestCases {
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for _, inner := range KeyTestCases {
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cases = append(cases, CASigningKeyTypes{
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Desc: fmt.Sprintf("%s-%d signing %s-%d", outer.KeyType, outer.KeyBits,
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inner.KeyType, inner.KeyBits),
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SigningKeyType: outer.KeyType,
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SigningKeyBits: outer.KeyBits,
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CSRKeyType: inner.KeyType,
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CSRKeyBits: inner.KeyBits,
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})
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}
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}
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return cases
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}
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// TestConsulProvider creates a new ConsulProvider, taking care to stub out it's
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// Logger so that logging calls don't panic. If logging output is important
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func TestConsulProvider(t testing.T, d ConsulProviderStateDelegate) *ConsulProvider {
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logger := hclog.New(&hclog.LoggerOptions{Output: io.Discard})
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provider := &ConsulProvider{Delegate: d, logger: logger}
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return provider
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}
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// SkipIfVaultNotPresent skips the test if the vault binary is not in PATH.
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//
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// These tests may be skipped in CI. They are run as part of a separate
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// integration test suite.
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func SkipIfVaultNotPresent(t testing.T, reqs ...vaultRequirements) {
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// Try to safeguard against tests that will never run in CI.
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// This substring should match the pattern used by the
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// test-connect-ca-providers CI job.
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if !strings.Contains(t.Name(), "Vault") {
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t.Fatalf("test name must contain Vault, otherwise CI will never run it")
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}
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vaultBinaryName := os.Getenv("VAULT_BINARY_NAME")
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if vaultBinaryName == "" {
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vaultBinaryName = "vault"
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}
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path, err := exec.LookPath(vaultBinaryName)
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if err != nil || path == "" {
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t.Skipf("%q not found on $PATH - download and install to run this test", vaultBinaryName)
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}
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// Check for any additional Vault requirements.
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for _, r := range reqs {
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if r.Enterprise {
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ver := vaultVersion(t, vaultBinaryName)
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if !strings.Contains(ver, "+ent") {
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t.Skipf("%q is not a Vault Enterprise version", ver)
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}
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}
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}
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}
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func NewTestVaultServer(t testing.T) *TestVaultServer {
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vaultBinaryName := os.Getenv("VAULT_BINARY_NAME")
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if vaultBinaryName == "" {
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vaultBinaryName = "vault"
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}
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path, err := exec.LookPath(vaultBinaryName)
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if err != nil || path == "" {
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t.Fatalf("%q not found on $PATH", vaultBinaryName)
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}
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ports := freeport.GetN(t, 2)
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var (
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clientAddr = fmt.Sprintf("127.0.0.1:%d", ports[0])
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clusterAddr = fmt.Sprintf("127.0.0.1:%d", ports[1])
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)
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const token = "root"
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client, err := vaultapi.NewClient(&vaultapi.Config{
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Address: "http://" + clientAddr,
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})
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require.NoError(t, err)
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client.SetToken(token)
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args := []string{
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"server",
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"-dev",
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"-dev-root-token-id",
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token,
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"-dev-listen-address",
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clientAddr,
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"-address",
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clusterAddr,
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// We pass '-dev-no-store-token' to avoid having multiple vaults oddly
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// interact and fail like this:
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//
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// Error initializing Dev mode: rename /.vault-token.tmp /.vault-token: no such file or directory
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//
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"-dev-no-store-token",
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}
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cmd := exec.Command(vaultBinaryName, args...)
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cmd.Stdout = io.Discard
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cmd.Stderr = io.Discard
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require.NoError(t, cmd.Start())
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testVault := &TestVaultServer{
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RootToken: token,
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Addr: "http://" + clientAddr,
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cmd: cmd,
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client: client,
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}
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t.Cleanup(func() {
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if err := testVault.Stop(); err != nil {
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t.Logf("failed to stop vault server: %v", err)
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}
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})
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testVault.WaitUntilReady(t)
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return testVault
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}
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type TestVaultServer struct {
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RootToken string
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Addr string
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cmd *exec.Cmd
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client *vaultapi.Client
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}
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var printedVaultVersion sync.Once
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var vaultTestVersion string
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func (v *TestVaultServer) Client() *vaultapi.Client {
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return v.client
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}
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func (v *TestVaultServer) WaitUntilReady(t testing.T) {
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var version string
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retry.Run(t, func(r *retry.R) {
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resp, err := v.client.Sys().Health()
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if err != nil {
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r.Fatalf("err: %v", err)
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}
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if !resp.Initialized {
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r.Fatalf("vault server is not initialized")
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}
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if resp.Sealed {
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r.Fatalf("vault server is sealed")
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}
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version = resp.Version
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})
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printedVaultVersion.Do(func() {
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vaultTestVersion = version
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fmt.Fprintf(os.Stderr, "[INFO] agent/connect/ca: testing with vault server version: %s\n", version)
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})
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}
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func (v *TestVaultServer) Stop() error {
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// There was no process
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if v.cmd == nil {
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return nil
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}
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if v.cmd.Process != nil {
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if err := v.cmd.Process.Signal(os.Interrupt); err != nil && !errors.Is(err, os.ErrProcessDone) {
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return fmt.Errorf("failed to kill vault server: %v", err)
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}
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}
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// wait for the process to exit to be sure that the data dir can be
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// deleted on all platforms.
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if err := v.cmd.Wait(); err != nil {
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if strings.Contains(err.Error(), "exec: Wait was already called") {
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return nil
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}
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return err
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}
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return nil
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}
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func requireTrailingNewline(t testing.T, leafPEM string) {
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t.Helper()
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if len(leafPEM) == 0 {
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t.Fatalf("cert is empty")
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}
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if rune(leafPEM[len(leafPEM)-1]) != '\n' {
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t.Fatalf("cert does not end with a new line")
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}
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}
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// The zero value implies unprivileged.
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type VaultTokenAttributes struct {
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RootPath, IntermediatePath string
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ConsulManaged bool
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VaultManaged bool
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WithSudo bool
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CustomRules string
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}
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func (a *VaultTokenAttributes) DisplayName() string {
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switch {
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case a == nil:
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return "unprivileged"
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case a.CustomRules != "":
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return "custom"
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case a.ConsulManaged:
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return "consul-managed"
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case a.VaultManaged:
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return "vault-managed"
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default:
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return "unprivileged"
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}
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}
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func (a *VaultTokenAttributes) Rules(t testing.T) string {
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switch {
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case a == nil:
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return ""
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case a.CustomRules != "":
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return a.CustomRules
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case a.RootPath == "":
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t.Fatal("missing required RootPath")
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return "" // dead code
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case a.IntermediatePath == "":
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t.Fatal("missing required IntermediatePath")
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return "" // dead code
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case a.ConsulManaged:
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// Consul Managed PKI Mounts
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rules := fmt.Sprintf(`
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path "sys/mounts" {
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capabilities = [ "read" ]
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}
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path "sys/mounts/%[1]s" {
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capabilities = [ "create", "read", "update", "delete", "list" ]
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}
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path "sys/mounts/%[2]s" {
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capabilities = [ "create", "read", "update", "delete", "list" ]
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}
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# Needed for Consul 1.11+
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path "sys/mounts/%[2]s/tune" {
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capabilities = [ "update" ]
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}
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# vault token renewal
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path "auth/token/renew-self" {
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capabilities = [ "update" ]
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}
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path "auth/token/lookup-self" {
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capabilities = [ "read" ]
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}
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path "%[1]s/*" {
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capabilities = [ "create", "read", "update", "delete", "list" ]
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}
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path "%[2]s/*" {
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capabilities = [ "create", "read", "update", "delete", "list" ]
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}
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`, a.RootPath, a.IntermediatePath)
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if a.WithSudo {
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rules += fmt.Sprintf(`
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path "%[1]s/root/sign-self-issued" {
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capabilities = [ "sudo", "update" ]
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}
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`, a.RootPath)
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}
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return rules
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case a.VaultManaged:
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// Vault-managed PKI root.
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t.Fatal("TODO: implement this and use it in tests")
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return ""
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default:
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// zero value
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return ""
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}
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}
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func CreateVaultTokenWithAttrs(t testing.T, client *vaultapi.Client, attr *VaultTokenAttributes) string {
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policyName, err := uuid.GenerateUUID()
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require.NoError(t, err)
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rules := attr.Rules(t)
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token := createVaultTokenAndPolicy(t, client, policyName, rules)
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// t.Logf("created vault token with scope %q: %s", attr.DisplayName(), token)
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return token
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}
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func createVaultTokenAndPolicy(t testing.T, client *vaultapi.Client, policyName, policyRules string) string {
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require.NoError(t, client.Sys().PutPolicy(policyName, policyRules))
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renew := true
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tok, err := client.Auth().Token().Create(&vaultapi.TokenCreateRequest{
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Policies: []string{policyName},
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Renewable: &renew,
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})
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require.NoError(t, err)
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return tok.Auth.ClientToken
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}
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func vaultVersion(t testing.T, vaultBinaryName string) string {
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cmd := exec.Command(vaultBinaryName, []string{"version"}...)
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output, err := cmd.Output()
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require.NoError(t, err)
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return string(output[:len(output)-1])
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}
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