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				https://github.com/optim-enterprises-bv/vault.git
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	If specified, verify a specific server name during TLS negotiation rather than the server name in the URL.
		
			
				
	
	
		
			384 lines
		
	
	
		
			9.4 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			384 lines
		
	
	
		
			9.4 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
package api
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import (
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	"crypto/tls"
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	"crypto/x509"
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	"encoding/pem"
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	"errors"
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	"fmt"
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	"io/ioutil"
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	"net/http"
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	"net/url"
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	"os"
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	"path/filepath"
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	"strconv"
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	"strings"
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	"sync"
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	"time"
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	"github.com/hashicorp/go-cleanhttp"
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)
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const EnvVaultAddress = "VAULT_ADDR"
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const EnvVaultCACert = "VAULT_CACERT"
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const EnvVaultCAPath = "VAULT_CAPATH"
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const EnvVaultClientCert = "VAULT_CLIENT_CERT"
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const EnvVaultClientKey = "VAULT_CLIENT_KEY"
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const EnvVaultInsecure = "VAULT_SKIP_VERIFY"
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const EnvVaultTLSServerName = "VAULT_TLS_SERVER_NAME"
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var (
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	errRedirect = errors.New("redirect")
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)
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// Config is used to configure the creation of the client.
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type Config struct {
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	// Address is the address of the Vault server. This should be a complete
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	// URL such as "http://vault.example.com". If you need a custom SSL
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	// cert or want to enable insecure mode, you need to specify a custom
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	// HttpClient.
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	Address string
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	// HttpClient is the HTTP client to use, which will currently always have the
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	// same values as http.DefaultClient. This is used to control redirect behavior.
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	HttpClient *http.Client
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	redirectSetup sync.Once
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}
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// DefaultConfig returns a default configuration for the client. It is
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// safe to modify the return value of this function.
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//
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// The default Address is https://127.0.0.1:8200, but this can be overridden by
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// setting the `VAULT_ADDR` environment variable.
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func DefaultConfig() *Config {
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	config := &Config{
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		Address: "https://127.0.0.1:8200",
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		HttpClient: cleanhttp.DefaultClient(),
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	}
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	config.HttpClient.Timeout = time.Second * 60
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	transport := config.HttpClient.Transport.(*http.Transport)
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	transport.TLSHandshakeTimeout = 10 * time.Second
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	transport.TLSClientConfig = &tls.Config{
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		MinVersion: tls.VersionTLS12,
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	}
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	if v := os.Getenv(EnvVaultAddress); v != "" {
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		config.Address = v
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	}
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	return config
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}
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// ReadEnvironment reads configuration information from the
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// environment. If there is an error, no configuration value
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// is updated.
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func (c *Config) ReadEnvironment() error {
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	var envAddress string
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	var envCACert string
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	var envCAPath string
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	var envClientCert string
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	var envClientKey string
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	var envInsecure bool
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	var foundInsecure bool
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	var envTLSServerName string
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	var newCertPool *x509.CertPool
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	var clientCert tls.Certificate
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	var foundClientCert bool
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	if v := os.Getenv(EnvVaultAddress); v != "" {
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		envAddress = v
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	}
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	if v := os.Getenv(EnvVaultCACert); v != "" {
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		envCACert = v
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	}
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	if v := os.Getenv(EnvVaultCAPath); v != "" {
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		envCAPath = v
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	}
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	if v := os.Getenv(EnvVaultClientCert); v != "" {
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		envClientCert = v
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	}
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	if v := os.Getenv(EnvVaultClientKey); v != "" {
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		envClientKey = v
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	}
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	if v := os.Getenv(EnvVaultInsecure); v != "" {
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		var err error
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		envInsecure, err = strconv.ParseBool(v)
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		if err != nil {
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			return fmt.Errorf("Could not parse VAULT_SKIP_VERIFY")
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		}
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		foundInsecure = true
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	}
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	if v := os.Getenv(EnvVaultTLSServerName); v != "" {
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		envTLSServerName = v
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	}
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	// If we need custom TLS configuration, then set it
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	if envCACert != "" || envCAPath != "" || envClientCert != "" || envClientKey != "" || envInsecure {
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		var err error
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		if envCACert != "" {
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			newCertPool, err = LoadCACert(envCACert)
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		} else if envCAPath != "" {
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			newCertPool, err = LoadCAPath(envCAPath)
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		}
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		if err != nil {
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			return fmt.Errorf("Error setting up CA path: %s", err)
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		}
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		if envClientCert != "" && envClientKey != "" {
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			clientCert, err = tls.LoadX509KeyPair(envClientCert, envClientKey)
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			if err != nil {
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				return err
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			}
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			foundClientCert = true
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		} else if envClientCert != "" || envClientKey != "" {
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			return fmt.Errorf("Both client cert and client key must be provided")
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		}
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	}
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	if envAddress != "" {
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		c.Address = envAddress
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	}
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	clientTLSConfig := c.HttpClient.Transport.(*http.Transport).TLSClientConfig
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	if foundInsecure {
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		clientTLSConfig.InsecureSkipVerify = envInsecure
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	}
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	if newCertPool != nil {
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		clientTLSConfig.RootCAs = newCertPool
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	}
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	if foundClientCert {
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		clientTLSConfig.Certificates = []tls.Certificate{clientCert}
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	}
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	if envTLSServerName != "" {
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		clientTLSConfig.ServerName = envTLSServerName
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	}
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	return nil
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}
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// Client is the client to the Vault API. Create a client with
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// NewClient.
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type Client struct {
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	addr   *url.URL
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	config *Config
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	token  string
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}
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// NewClient returns a new client for the given configuration.
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//
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// If the environment variable `VAULT_TOKEN` is present, the token will be
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// automatically added to the client. Otherwise, you must manually call
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// `SetToken()`.
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func NewClient(c *Config) (*Client, error) {
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	u, err := url.Parse(c.Address)
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	if err != nil {
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		return nil, err
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	}
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	if c.HttpClient == nil {
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		c.HttpClient = DefaultConfig().HttpClient
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	}
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	redirFunc := func() {
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		// Ensure redirects are not automatically followed
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		// Note that this is sane for the API client as it has its own
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		// redirect handling logic (and thus also for command/meta),
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		// but in e.g. http_test actual redirect handling is necessary
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		c.HttpClient.CheckRedirect = func(req *http.Request, via []*http.Request) error {
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			return errRedirect
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		}
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	}
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	c.redirectSetup.Do(redirFunc)
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	client := &Client{
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		addr:   u,
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		config: c,
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	}
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	if token := os.Getenv("VAULT_TOKEN"); token != "" {
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		client.SetToken(token)
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	}
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	return client, nil
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}
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// Token returns the access token being used by this client. It will
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// return the empty string if there is no token set.
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func (c *Client) Token() string {
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	return c.token
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}
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// SetToken sets the token directly. This won't perform any auth
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// verification, it simply sets the token properly for future requests.
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func (c *Client) SetToken(v string) {
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	c.token = v
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}
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// ClearToken deletes the token if it is set or does nothing otherwise.
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func (c *Client) ClearToken() {
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	c.token = ""
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}
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// NewRequest creates a new raw request object to query the Vault server
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// configured for this client. This is an advanced method and generally
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// doesn't need to be called externally.
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func (c *Client) NewRequest(method, path string) *Request {
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	req := &Request{
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		Method: method,
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		URL: &url.URL{
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			Scheme: c.addr.Scheme,
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			Host:   c.addr.Host,
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			Path:   path,
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		},
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		ClientToken: c.token,
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		Params:      make(map[string][]string),
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	}
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	return req
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}
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// RawRequest performs the raw request given. This request may be against
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// a Vault server not configured with this client. This is an advanced operation
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// that generally won't need to be called externally.
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func (c *Client) RawRequest(r *Request) (*Response, error) {
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	redirectCount := 0
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START:
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	req, err := r.ToHTTP()
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	if err != nil {
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		return nil, err
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	}
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	var result *Response
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	resp, err := c.config.HttpClient.Do(req)
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	if resp != nil {
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		result = &Response{Response: resp}
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	}
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	if err != nil {
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		if urlErr, ok := err.(*url.Error); ok && urlErr.Err == errRedirect {
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			err = nil
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		} else if strings.Contains(err.Error(), "tls: oversized") {
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			err = fmt.Errorf(
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				"%s\n\n"+
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					"This error usually means that the server is running with TLS disabled\n"+
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					"but the client is configured to use TLS. Please either enable TLS\n"+
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					"on the server or run the client with -address set to an address\n"+
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					"that uses the http protocol:\n\n"+
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					"    vault <command> -address http://<address>\n\n"+
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					"You can also set the VAULT_ADDR environment variable:\n\n\n"+
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					"    VAULT_ADDR=http://<address> vault <command>\n\n"+
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					"where <address> is replaced by the actual address to the server.",
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				err)
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		}
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	}
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	if err != nil {
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		return result, err
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	}
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	// Check for a redirect, only allowing for a single redirect
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	if (resp.StatusCode == 301 || resp.StatusCode == 302 || resp.StatusCode == 307) && redirectCount == 0 {
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		// Parse the updated location
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		respLoc, err := resp.Location()
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		if err != nil {
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			return result, err
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		}
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		// Ensure a protocol downgrade doesn't happen
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		if req.URL.Scheme == "https" && respLoc.Scheme != "https" {
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			return result, fmt.Errorf("redirect would cause protocol downgrade")
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		}
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		// Update the request
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		r.URL = respLoc
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		// Reset the request body if any
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		if err := r.ResetJSONBody(); err != nil {
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			return result, err
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		}
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		// Retry the request
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		redirectCount++
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		goto START
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	}
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	if err := result.Error(); err != nil {
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		return result, err
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	}
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	return result, nil
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}
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// Loads the certificate from given path and creates a certificate pool from it.
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func LoadCACert(path string) (*x509.CertPool, error) {
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	certs, err := loadCertFromPEM(path)
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	if err != nil {
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		return nil, err
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	}
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	result := x509.NewCertPool()
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	for _, cert := range certs {
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		result.AddCert(cert)
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	}
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	return result, nil
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}
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// Loads the certificates present in the given directory and creates a
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// certificate pool from it.
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func LoadCAPath(path string) (*x509.CertPool, error) {
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	result := x509.NewCertPool()
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	fn := func(path string, info os.FileInfo, err error) error {
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		if err != nil {
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			return err
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		}
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		if info.IsDir() {
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			return nil
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		}
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		certs, err := loadCertFromPEM(path)
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		if err != nil {
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			return err
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		}
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		for _, cert := range certs {
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			result.AddCert(cert)
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		}
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		return nil
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	}
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	return result, filepath.Walk(path, fn)
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}
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// Creates a certificate from the given path
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func loadCertFromPEM(path string) ([]*x509.Certificate, error) {
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	pemCerts, err := ioutil.ReadFile(path)
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	if err != nil {
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		return nil, err
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	}
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	certs := make([]*x509.Certificate, 0, 5)
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	for len(pemCerts) > 0 {
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		var block *pem.Block
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		block, pemCerts = pem.Decode(pemCerts)
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		if block == nil {
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			break
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		}
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		if block.Type != "CERTIFICATE" || len(block.Headers) != 0 {
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			continue
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		}
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		cert, err := x509.ParseCertificate(block.Bytes)
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		if err != nil {
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			return nil, err
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		}
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		certs = append(certs, cert)
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	}
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	return certs, nil
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}
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