Files
releases/server/server.go
T
Torin Sandall 05761a8dec server: Fix data races around state modified on reload
This commit fixes another data race found by running go test
-race. The server was reading state modified by the trigger handler
without using a mutex or being inside of a transaction.

Note, we should think about how we can move away from relying on the
server transactions to implement critical sections in the server as
this is bound to bite us in the future.

Signed-off-by: Torin Sandall <torinsandall@gmail.com>
2020-04-24 16:22:53 -04:00

2553 lines
68 KiB
Go

// Copyright 2016 The OPA Authors. All rights reserved.
// Use of this source code is governed by an Apache2
// license that can be found in the LICENSE file.
package server
import (
"bytes"
"context"
"crypto/tls"
"crypto/x509"
"encoding/json"
"fmt"
"html/template"
"io"
"io/ioutil"
"net"
"net/http"
"net/http/httputil"
"net/http/pprof"
"net/url"
"os"
"strconv"
"strings"
"sync"
"time"
"github.com/gorilla/mux"
"github.com/pkg/errors"
"github.com/open-policy-agent/opa/ast"
"github.com/open-policy-agent/opa/bundle"
"github.com/open-policy-agent/opa/metrics"
"github.com/open-policy-agent/opa/plugins"
bundlePlugin "github.com/open-policy-agent/opa/plugins/bundle"
"github.com/open-policy-agent/opa/rego"
"github.com/open-policy-agent/opa/server/authorizer"
"github.com/open-policy-agent/opa/server/identifier"
"github.com/open-policy-agent/opa/server/types"
"github.com/open-policy-agent/opa/server/writer"
"github.com/open-policy-agent/opa/storage"
"github.com/open-policy-agent/opa/topdown"
"github.com/open-policy-agent/opa/topdown/lineage"
"github.com/open-policy-agent/opa/util"
"github.com/open-policy-agent/opa/version"
"github.com/open-policy-agent/opa/watch"
)
// AuthenticationScheme enumerates the supported authentication schemes. The
// authentication scheme determines how client identities are established.
type AuthenticationScheme int
// Set of supported authentication schemes.
const (
AuthenticationOff AuthenticationScheme = iota
AuthenticationToken
AuthenticationTLS
)
// AuthorizationScheme enumerates the supported authorization schemes. The authorization
// scheme determines how access to OPA is controlled.
type AuthorizationScheme int
// Set of supported authorization schemes.
const (
AuthorizationOff AuthorizationScheme = iota
AuthorizationBasic
)
// Set of handlers for use in the "handler" dimension of the duration metric.
const (
PromHandlerV0Data = "v0/data"
PromHandlerV1Data = "v1/data"
PromHandlerV1Query = "v1/query"
PromHandlerV1Policies = "v1/policies"
PromHandlerV1Compile = "v1/compile"
PromHandlerIndex = "index"
PromHandlerCatch = "catchall"
PromHandlerHealth = "health"
)
const pqMaxCacheSize = 100
// map of unsafe builtins
var unsafeBuiltinsMap = map[string]struct{}{ast.HTTPSend.Name: struct{}{}}
// Server represents an instance of OPA running in server mode.
type Server struct {
Handler http.Handler
router *mux.Router
addrs []string
insecureAddr string
authentication AuthenticationScheme
authorization AuthorizationScheme
cert *tls.Certificate
certPool *x509.CertPool
mtx sync.RWMutex
partials map[string]rego.PartialResult
preparedEvalQueries *cache
store storage.Store
manager *plugins.Manager
watcher *watch.Watcher
decisionIDFactory func() string
revisions map[string]string
legacyRevision string
buffer Buffer
logger func(context.Context, *Info) error
errLimit int
pprofEnabled bool
runtime *ast.Term
httpListeners []httpListener
metrics Metrics
defaultDecisionPath string
}
// Metrics defines the interface that the server requires for recording HTTP
// handler metrics.
type Metrics interface {
RegisterEndpoints(registrar func(path, method string, handler http.Handler))
InstrumentHandler(handler http.Handler, label string) http.Handler
}
// Loop will contain all the calls from the server that we'll be listening on.
type Loop func() error
// New returns a new Server.
func New() *Server {
s := Server{}
return &s
}
// Init initializes the server. This function MUST be called before Loop.
func (s *Server) Init(ctx context.Context) (*Server, error) {
s.initRouter()
// Add authorization handler. This must come BEFORE authentication handler
// so that the latter can run first.
switch s.authorization {
case AuthorizationBasic:
s.Handler = authorizer.NewBasic(
s.Handler,
s.getCompiler,
s.store,
authorizer.Runtime(s.runtime),
authorizer.Decision(s.manager.Config.DefaultAuthorizationDecisionRef))
}
switch s.authentication {
case AuthenticationToken:
s.Handler = identifier.NewTokenBased(s.Handler)
case AuthenticationTLS:
s.Handler = identifier.NewTLSBased(s.Handler)
}
txn, err := s.store.NewTransaction(ctx, storage.WriteParams)
if err != nil {
return nil, err
}
// Register triggers so that if runtime reloads the policies, the
// server sees the change.
config := storage.TriggerConfig{
OnCommit: s.reload,
}
if _, err := s.store.Register(ctx, txn, config); err != nil {
s.store.Abort(ctx, txn)
return nil, err
}
s.manager.RegisterCompilerTrigger(s.migrateWatcher)
s.watcher, err = watch.New(ctx, s.store, s.getCompiler(), txn)
if err != nil {
return nil, err
}
s.partials = map[string]rego.PartialResult{}
s.preparedEvalQueries = newCache(pqMaxCacheSize)
// Check if there is a bundle revision available at the legacy storage path
rev, err := bundle.LegacyReadRevisionFromStore(ctx, s.store, txn)
if err == nil && rev != "" {
s.legacyRevision = rev
}
s.defaultDecisionPath = s.generateDefaultDecisionPath()
return s, s.store.Commit(ctx, txn)
}
// Shutdown will attempt to gracefully shutdown each of the http servers
// currently in use by the OPA Server. If any exceed the deadline specified
// by the context an error will be returned.
func (s *Server) Shutdown(ctx context.Context) error {
errChan := make(chan error)
for _, srvr := range s.httpListeners {
go func(s httpListener) {
errChan <- s.Shutdown(ctx)
}(srvr)
}
// wait until each server has finished shutting down
var errorList []error
for i := 0; i < len(s.httpListeners); i++ {
err := <-errChan
if err != nil {
errorList = append(errorList, err)
}
}
if len(errorList) > 0 {
errMsg := "error while shutting down: "
for i, err := range errorList {
errMsg += fmt.Sprintf("(%d) %s. ", i, err.Error())
}
return errors.New(errMsg)
}
return nil
}
// WithAddresses sets the listening addresses that the server will bind to.
func (s *Server) WithAddresses(addrs []string) *Server {
s.addrs = addrs
return s
}
// WithInsecureAddress sets the listening address that the server will bind to.
func (s *Server) WithInsecureAddress(addr string) *Server {
s.insecureAddr = addr
return s
}
// WithAuthentication sets authentication scheme to use on the server.
func (s *Server) WithAuthentication(scheme AuthenticationScheme) *Server {
s.authentication = scheme
return s
}
// WithAuthorization sets authorization scheme to use on the server.
func (s *Server) WithAuthorization(scheme AuthorizationScheme) *Server {
s.authorization = scheme
return s
}
// WithCertificate sets the server-side certificate that the server will use.
func (s *Server) WithCertificate(cert *tls.Certificate) *Server {
s.cert = cert
return s
}
// WithCertPool sets the server-side cert pool that the server will use.
func (s *Server) WithCertPool(pool *x509.CertPool) *Server {
s.certPool = pool
return s
}
// WithStore sets the storage used by the server.
func (s *Server) WithStore(store storage.Store) *Server {
s.store = store
return s
}
// WithMetrics sets the metrics provider used by the server.
func (s *Server) WithMetrics(m Metrics) *Server {
s.metrics = m
return s
}
// WithManager sets the plugins manager used by the server.
func (s *Server) WithManager(manager *plugins.Manager) *Server {
s.manager = manager
return s
}
// WithCompilerErrorLimit sets the limit on the number of compiler errors the server will
// allow.
func (s *Server) WithCompilerErrorLimit(limit int) *Server {
s.errLimit = limit
return s
}
// WithPprofEnabled sets whether pprof endpoints are enabled
func (s *Server) WithPprofEnabled(pprofEnabled bool) *Server {
s.pprofEnabled = pprofEnabled
return s
}
// WithDecisionLogger sets the decision logger used by the
// server. DEPRECATED. Use WithDecisionLoggerWithErr instead.
func (s *Server) WithDecisionLogger(logger func(context.Context, *Info)) *Server {
s.logger = func(ctx context.Context, info *Info) error {
logger(ctx, info)
return nil
}
return s
}
// WithDecisionLoggerWithErr sets the decision logger used by the server.
func (s *Server) WithDecisionLoggerWithErr(logger func(context.Context, *Info) error) *Server {
s.logger = logger
return s
}
// WithDecisionIDFactory sets a function on the server to generate decision IDs.
func (s *Server) WithDecisionIDFactory(f func() string) *Server {
s.decisionIDFactory = f
return s
}
// WithRuntime sets the runtime data to provide to the evaluation engine.
func (s *Server) WithRuntime(term *ast.Term) *Server {
s.runtime = term
return s
}
// WithRouter sets the mux.Router to attach OPA's HTTP API routes onto. If a
// router is not supplied, the server will create it's own.
func (s *Server) WithRouter(router *mux.Router) *Server {
s.router = router
return s
}
// Listeners returns functions that listen and serve connections.
func (s *Server) Listeners() ([]Loop, error) {
loops := []Loop{}
for _, addr := range s.addrs {
parsedURL, err := parseURL(addr, s.cert != nil)
if err != nil {
return nil, err
}
var loop Loop
var listener httpListener
switch parsedURL.Scheme {
case "unix":
loop, listener, err = s.getListenerForUNIXSocket(parsedURL)
case "http":
loop, listener, err = s.getListenerForHTTPServer(parsedURL)
case "https":
loop, listener, err = s.getListenerForHTTPSServer(parsedURL)
default:
err = fmt.Errorf("invalid url scheme %q", parsedURL.Scheme)
}
if err != nil {
return nil, err
}
s.httpListeners = append(s.httpListeners, listener)
loops = append(loops, loop)
}
if s.insecureAddr != "" {
parsedURL, err := parseURL(s.insecureAddr, false)
if err != nil {
return nil, err
}
loop, httpListener, err := s.getListenerForHTTPServer(parsedURL)
if err != nil {
return nil, err
}
s.httpListeners = append(s.httpListeners, httpListener)
loops = append(loops, loop)
}
return loops, nil
}
// Addrs returns a list of addresses that the server is listening on.
// if the server hasn't been started it will not return an address.
func (s *Server) Addrs() []string {
var addrs []string
for _, l := range s.httpListeners {
a := l.Addr()
if a != "" {
addrs = append(addrs, a)
}
}
return addrs
}
type tcpKeepAliveListener struct {
*net.TCPListener
}
func (ln tcpKeepAliveListener) Accept() (net.Conn, error) {
tc, err := ln.AcceptTCP()
if err != nil {
return nil, err
}
tc.SetKeepAlive(true)
tc.SetKeepAlivePeriod(3 * time.Minute)
return tc, nil
}
type httpListener interface {
Addr() string
ListenAndServe() error
ListenAndServeTLS(certFile, keyFile string) error
Shutdown(ctx context.Context) error
}
// baseHTTPListener is just a wrapper around http.Server
type baseHTTPListener struct {
s *http.Server
l net.Listener
}
var _ httpListener = (*baseHTTPListener)(nil)
func newHTTPListener(srvr *http.Server) httpListener {
return &baseHTTPListener{srvr, nil}
}
func newHTTPUnixSocketListener(srvr *http.Server, l net.Listener) httpListener {
return &baseHTTPListener{srvr, l}
}
func (b *baseHTTPListener) ListenAndServe() error {
addr := b.s.Addr
if addr == "" {
addr = ":http"
}
var err error
b.l, err = net.Listen("tcp", addr)
if err != nil {
return err
}
return b.s.Serve(tcpKeepAliveListener{b.l.(*net.TCPListener)})
}
func (b *baseHTTPListener) Addr() string {
if b.l != nil {
if addr := b.l.(*net.TCPListener).Addr(); addr != nil {
return addr.String()
}
}
return ""
}
func (b *baseHTTPListener) ListenAndServeTLS(certFile, keyFile string) error {
addr := b.s.Addr
if addr == "" {
addr = ":https"
}
var err error
b.l, err = net.Listen("tcp", addr)
if err != nil {
return err
}
defer b.l.Close()
return b.s.ServeTLS(tcpKeepAliveListener{b.l.(*net.TCPListener)}, certFile, keyFile)
}
func (b *baseHTTPListener) Shutdown(ctx context.Context) error {
return b.s.Shutdown(ctx)
}
func (s *Server) getListenerForHTTPServer(u *url.URL) (Loop, httpListener, error) {
httpServer := http.Server{
Addr: u.Host,
Handler: s.Handler,
}
l := newHTTPListener(&httpServer)
return l.ListenAndServe, l, nil
}
func (s *Server) getListenerForHTTPSServer(u *url.URL) (Loop, httpListener, error) {
if s.cert == nil {
return nil, nil, fmt.Errorf("TLS certificate required but not supplied")
}
httpsServer := http.Server{
Addr: u.Host,
Handler: s.Handler,
TLSConfig: &tls.Config{
Certificates: []tls.Certificate{*s.cert},
ClientCAs: s.certPool,
},
}
if s.authentication == AuthenticationTLS {
httpsServer.TLSConfig.ClientAuth = tls.RequireAndVerifyClientCert
}
l := newHTTPListener(&httpsServer)
httpsLoop := func() error { return l.ListenAndServeTLS("", "") }
return httpsLoop, l, nil
}
func (s *Server) getListenerForUNIXSocket(u *url.URL) (Loop, httpListener, error) {
socketPath := u.Host + u.Path
// Remove domain socket file in case it already exists.
os.Remove(socketPath)
domainSocketServer := http.Server{Handler: s.Handler}
unixListener, err := net.Listen("unix", socketPath)
if err != nil {
return nil, nil, err
}
l := newHTTPUnixSocketListener(&domainSocketServer, unixListener)
domainSocketLoop := func() error { return domainSocketServer.Serve(unixListener) }
return domainSocketLoop, l, nil
}
func (s *Server) initRouter() {
router := s.router
if router == nil {
router = mux.NewRouter()
}
router.UseEncodedPath()
router.StrictSlash(true)
if s.metrics != nil {
s.metrics.RegisterEndpoints(func(path, method string, handler http.Handler) {
router.Handle(path, handler).Methods(method)
})
}
router.Handle("/health", s.instrumentHandler(http.HandlerFunc(s.unversionedGetHealth), PromHandlerHealth)).Methods(http.MethodGet)
if s.pprofEnabled {
router.HandleFunc("/debug/pprof/", pprof.Index)
router.Handle("/debug/pprof/allocs", pprof.Handler("allocs"))
router.Handle("/debug/pprof/block", pprof.Handler("block"))
router.Handle("/debug/pprof/heap", pprof.Handler("heap"))
router.Handle("/debug/pprof/mutex", pprof.Handler("mutex"))
router.HandleFunc("/debug/pprof/cmdline", pprof.Cmdline)
router.HandleFunc("/debug/pprof/profile", pprof.Profile)
router.HandleFunc("/debug/pprof/symbol", pprof.Symbol)
router.HandleFunc("/debug/pprof/trace", pprof.Trace)
}
s.registerHandler(router, 0, "/data/{path:.+}", http.MethodPost, s.instrumentHandler(s.v0DataPost, PromHandlerV0Data))
s.registerHandler(router, 0, "/data", http.MethodPost, s.instrumentHandler(s.v0DataPost, PromHandlerV0Data))
s.registerHandler(router, 1, "/data/{path:.+}", http.MethodDelete, s.instrumentHandler(s.v1DataDelete, PromHandlerV1Data))
s.registerHandler(router, 1, "/data/{path:.+}", http.MethodPut, s.instrumentHandler(s.v1DataPut, PromHandlerV1Data))
s.registerHandler(router, 1, "/data", http.MethodPut, s.instrumentHandler(s.v1DataPut, PromHandlerV1Data))
s.registerHandler(router, 1, "/data/{path:.+}", http.MethodGet, s.instrumentHandler(s.v1DataGet, PromHandlerV1Data))
s.registerHandler(router, 1, "/data", http.MethodGet, s.instrumentHandler(s.v1DataGet, PromHandlerV1Data))
s.registerHandler(router, 1, "/data/{path:.+}", http.MethodPatch, s.instrumentHandler(s.v1DataPatch, PromHandlerV1Data))
s.registerHandler(router, 1, "/data", http.MethodPatch, s.instrumentHandler(s.v1DataPatch, PromHandlerV1Data))
s.registerHandler(router, 1, "/data/{path:.+}", http.MethodPost, s.instrumentHandler(s.v1DataPost, PromHandlerV1Data))
s.registerHandler(router, 1, "/data", http.MethodPost, s.instrumentHandler(s.v1DataPost, PromHandlerV1Data))
s.registerHandler(router, 1, "/policies", http.MethodGet, s.instrumentHandler(s.v1PoliciesList, PromHandlerV1Policies))
s.registerHandler(router, 1, "/policies/{path:.+}", http.MethodDelete, s.instrumentHandler(s.v1PoliciesDelete, PromHandlerV1Policies))
s.registerHandler(router, 1, "/policies/{path:.+}", http.MethodGet, s.instrumentHandler(s.v1PoliciesGet, PromHandlerV1Policies))
s.registerHandler(router, 1, "/policies/{path:.+}", http.MethodPut, s.instrumentHandler(s.v1PoliciesPut, PromHandlerV1Policies))
s.registerHandler(router, 1, "/query", http.MethodGet, s.instrumentHandler(s.v1QueryGet, PromHandlerV1Query))
s.registerHandler(router, 1, "/query", http.MethodPost, s.instrumentHandler(s.v1QueryPost, PromHandlerV1Query))
s.registerHandler(router, 1, "/compile", http.MethodPost, s.instrumentHandler(s.v1CompilePost, PromHandlerV1Compile))
router.Handle("/", s.instrumentHandler(http.HandlerFunc(s.unversionedPost), PromHandlerIndex)).Methods(http.MethodPost)
router.Handle("/", s.instrumentHandler(http.HandlerFunc(s.indexGet), PromHandlerIndex)).Methods(http.MethodGet)
// These are catch all handlers that respond 405 for resources that exist but the method is not allowed
router.Handle("/v0/data/{path:.*}", s.instrumentHandler(writer.HTTPStatus(405), PromHandlerCatch)).Methods(http.MethodGet, http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodPatch, http.MethodPut, http.MethodTrace)
router.Handle("/v0/data", s.instrumentHandler(writer.HTTPStatus(405), PromHandlerCatch)).Methods(http.MethodGet, http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodPatch, http.MethodPut,
http.MethodTrace)
// v1 Data catch all
router.Handle("/v1/data/{path:.*}", s.instrumentHandler(writer.HTTPStatus(405), PromHandlerCatch)).Methods(http.MethodHead,
http.MethodConnect, http.MethodOptions, http.MethodTrace)
router.Handle("/v1/data", s.instrumentHandler(writer.HTTPStatus(405), PromHandlerCatch)).Methods(http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodTrace)
// Policies catch all
router.Handle("/v1/policies", s.instrumentHandler(writer.HTTPStatus(405), PromHandlerCatch)).Methods(http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodTrace, http.MethodPost, http.MethodPut,
http.MethodPatch)
// Policies (/policies/{path.+} catch all
router.Handle("/v1/policies/{path:.*}", s.instrumentHandler(writer.HTTPStatus(405), PromHandlerCatch)).Methods(http.MethodHead,
http.MethodConnect, http.MethodOptions, http.MethodTrace, http.MethodPost)
// Query catch all
router.Handle("/v1/query/{path:.*}", s.instrumentHandler(writer.HTTPStatus(405), PromHandlerCatch)).Methods(http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodTrace, http.MethodPost, http.MethodPut, http.MethodPatch)
router.Handle("/v1/query", s.instrumentHandler(writer.HTTPStatus(405), PromHandlerCatch)).Methods(http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodTrace, http.MethodPut, http.MethodPatch)
s.Handler = router
}
func (s *Server) instrumentHandler(handler func(http.ResponseWriter, *http.Request), label string) http.Handler {
if s.metrics != nil {
return s.metrics.InstrumentHandler(http.HandlerFunc(handler), label)
}
return http.HandlerFunc(handler)
}
func (s *Server) execQuery(ctx context.Context, r *http.Request, txn storage.Transaction, decisionID string, parsedQuery ast.Body, input ast.Value, m metrics.Metrics, explainMode types.ExplainModeV1, includeMetrics, includeInstrumentation, pretty bool) (results types.QueryResponseV1, err error) {
logger := s.getDecisionLogger()
var buf *topdown.BufferTracer
if explainMode != types.ExplainOffV1 {
buf = topdown.NewBufferTracer()
}
var rawInput *interface{}
if input != nil {
x, err := ast.JSON(input)
if err != nil {
return results, err
}
rawInput = &x
}
compiler := s.getCompiler()
rego := rego.New(
rego.Store(s.store),
rego.Transaction(txn),
rego.Compiler(compiler),
rego.ParsedQuery(parsedQuery),
rego.ParsedInput(input),
rego.Metrics(m),
rego.Instrument(includeInstrumentation),
rego.Tracer(buf),
rego.Runtime(s.runtime),
rego.UnsafeBuiltins(unsafeBuiltinsMap),
)
output, err := rego.Eval(ctx)
if err != nil {
_ = logger.Log(ctx, txn, decisionID, r.RemoteAddr, "", parsedQuery.String(), rawInput, nil, err, m)
return results, err
}
for _, result := range output {
results.Result = append(results.Result, result.Bindings.WithoutWildcards())
}
if includeMetrics || includeInstrumentation {
results.Metrics = m.All()
}
if explainMode != types.ExplainOffV1 {
results.Explanation = s.getExplainResponse(explainMode, *buf, pretty)
}
var x interface{} = results.Result
err = logger.Log(ctx, txn, decisionID, r.RemoteAddr, "", parsedQuery.String(), rawInput, &x, nil, m)
return results, err
}
func (s *Server) indexGet(w http.ResponseWriter, r *http.Request) {
decisionID := s.generateDecisionID()
renderHeader(w)
renderBanner(w)
renderVersion(w)
defer renderFooter(w)
values := r.URL.Query()
qStrs := values[types.ParamQueryV1]
inputStrs := values[types.ParamInputV1]
explainMode := getExplain(r.URL.Query()[types.ParamExplainV1], types.ExplainOffV1)
ctx := r.Context()
renderQueryForm(w, qStrs, inputStrs, explainMode)
if len(qStrs) == 0 {
return
}
qStr := qStrs[len(qStrs)-1]
t0 := time.Now()
var input ast.Value
if len(inputStrs) > 0 && len(inputStrs[len(qStrs)-1]) > 0 {
t, err := ast.ParseTerm(inputStrs[len(qStrs)-1])
if err != nil {
renderQueryResult(w, nil, err, t0)
return
}
input = t.Value
}
parsedQuery, _ := validateQuery(qStr)
txn, err := s.store.NewTransaction(ctx)
if err != nil {
renderQueryResult(w, nil, err, t0)
return
}
defer s.store.Abort(ctx, txn)
results, err := s.execQuery(ctx, r, txn, decisionID, parsedQuery, input, nil, explainMode, false, false, true)
if err != nil {
renderQueryResult(w, nil, err, t0)
return
}
renderQueryResult(w, results, err, t0)
}
func (s *Server) registerHandler(router *mux.Router, version int, path string, method string, h http.Handler) {
prefix := fmt.Sprintf("/v%d", version)
router.Handle(prefix+path, h).Methods(method)
}
func (s *Server) reload(ctx context.Context, txn storage.Transaction, event storage.TriggerEvent) {
// NOTE(tsandall): We currently rely on the storage txn to provide
// critical sections in the server.
//
// If you modify this function to change any other state on the server, you must
// review the other places in the server where that state is accessed to avoid data
// races--the state must be accessed _after_ a txn has been opened.
// reset some cached info
s.partials = map[string]rego.PartialResult{}
s.revisions = map[string]string{}
s.preparedEvalQueries = newCache(pqMaxCacheSize)
s.defaultDecisionPath = s.generateDefaultDecisionPath()
// read all bundle revisions from storage (if any exist)
names, err := bundle.ReadBundleNamesFromStore(ctx, s.store, txn)
if err != nil && !storage.IsNotFound(err) {
panic(err)
}
for _, name := range names {
r, err := bundle.ReadBundleRevisionFromStore(ctx, s.store, txn, name)
if err != nil && !storage.IsNotFound(err) {
panic(err)
}
s.revisions[name] = r
}
// Check if we still have a legacy bundle manifest in the store
s.legacyRevision, err = bundle.LegacyReadRevisionFromStore(ctx, s.store, txn)
if err != nil && !storage.IsNotFound(err) {
panic(err)
}
}
func (s *Server) migrateWatcher(txn storage.Transaction) {
var err error
s.watcher, err = s.watcher.Migrate(s.manager.GetCompiler(), txn)
if err != nil {
// The only way migration can fail is if the old watcher is closed or if
// the new one cannot register a trigger with the store. Since we're
// using an inmem store with a write transaction, neither of these should
// be possible.
panic(err)
}
}
func (s *Server) unversionedPost(w http.ResponseWriter, r *http.Request) {
s.v0QueryPath(w, r, "", true)
}
func (s *Server) v0DataPost(w http.ResponseWriter, r *http.Request) {
s.v0QueryPath(w, r, mux.Vars(r)["path"], false)
}
func (s *Server) v0QueryPath(w http.ResponseWriter, r *http.Request, urlPath string, useDefaultDecisionPath bool) {
m := metrics.New()
m.Timer(metrics.ServerHandler).Start()
decisionID := s.generateDecisionID()
ctx := r.Context()
input, err := readInputV0(r)
if err != nil {
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, errors.Wrapf(err, "unexpected parse error for input"))
return
}
var goInput *interface{}
if input != nil {
x, err := ast.JSON(input)
if err != nil {
writer.ErrorString(w, http.StatusInternalServerError, types.CodeInvalidParameter, errors.Wrapf(err, "could not marshal input"))
return
}
goInput = &x
}
// Prepare for query.
txn, err := s.store.NewTransaction(ctx)
if err != nil {
writer.ErrorAuto(w, err)
return
}
defer s.store.Abort(ctx, txn)
if useDefaultDecisionPath {
urlPath = s.defaultDecisionPath
}
logger := s.getDecisionLogger()
pqID := "v0QueryPath::" + urlPath
preparedQuery, ok := s.getCachedPreparedEvalQuery(pqID, m)
if !ok {
path := stringPathToDataRef(urlPath)
rego := rego.New(
rego.Compiler(s.getCompiler()),
rego.Store(s.store),
rego.Transaction(txn),
rego.Query(path.String()),
rego.Metrics(m),
rego.Runtime(s.runtime),
rego.UnsafeBuiltins(unsafeBuiltinsMap),
)
pq, err := rego.PrepareForEval(ctx)
if err != nil {
_ = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, nil, err, m)
writer.ErrorAuto(w, err)
return
}
preparedQuery = &pq
s.preparedEvalQueries.Insert(pqID, preparedQuery)
}
rs, err := preparedQuery.Eval(
ctx,
rego.EvalTransaction(txn),
rego.EvalParsedInput(input),
rego.EvalMetrics(m),
)
m.Timer(metrics.ServerHandler).Stop()
// Handle results.
if err != nil {
_ = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, nil, err, m)
writer.ErrorAuto(w, err)
return
}
if len(rs) == 0 {
err := types.NewErrorV1(types.CodeUndefinedDocument, fmt.Sprintf("%v: %v", types.MsgUndefinedError, stringPathToDataRef(urlPath)))
if logErr := logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, nil, err, m); logErr != nil {
writer.ErrorAuto(w, logErr)
return
}
writer.Error(w, 404, err)
return
}
err = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, &rs[0].Expressions[0].Value, nil, m)
if err != nil {
writer.ErrorAuto(w, err)
return
}
writer.JSON(w, 200, rs[0].Expressions[0].Value, false)
}
func (s *Server) getCachedPreparedEvalQuery(key string, m metrics.Metrics) (*rego.PreparedEvalQuery, bool) {
pq, ok := s.preparedEvalQueries.Get(key)
m.Counter(metrics.ServerQueryCacheHit) // Creates the counter on the metrics if it doesn't exist, starts at 0
if ok {
m.Counter(metrics.ServerQueryCacheHit).Incr() // Increment counter on hit
return pq.(*rego.PreparedEvalQuery), true
}
return nil, false
}
func (s *Server) canEval(ctx context.Context) bool {
// Create very simple query that binds a single variable.
eval := rego.New(rego.Compiler(s.getCompiler()),
rego.Store(s.store), rego.Query("x = 1"))
// Run evaluation.
rs, err := eval.Eval(ctx)
if err != nil {
return false
}
v, ok := rs[0].Bindings["x"]
if ok {
jsonNumber, ok := v.(json.Number)
if ok && jsonNumber.String() == "1" {
return true
}
}
return false
}
func (s *Server) bundlesReady(pluginStatuses map[string]*plugins.Status) bool {
// Look for a discovery plugin first, if it exists and isn't ready
// then don't bother with the others.
// Note: use "discovery" instead of `discovery.Name` to avoid import
// cycle problems..
dpStatus, ok := pluginStatuses["discovery"]
if ok && dpStatus != nil && (dpStatus.State != plugins.StateOK) {
return false
}
// The bundle plugin won't return "OK" until the first activation
// of each configured bundle.
bpStatus, ok := pluginStatuses[bundlePlugin.Name]
if ok && bpStatus != nil && (bpStatus.State != plugins.StateOK) {
return false
}
return true
}
func (s *Server) unversionedGetHealth(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
includeBundleStatus := getBoolParam(r.URL, types.ParamBundleActivationV1, true) ||
getBoolParam(r.URL, types.ParamBundlesActivationV1, true)
includePluginStatus := getBoolParam(r.URL, types.ParamPluginsV1, true)
// Ensure the server can evaluate a simple query
if !s.canEval(ctx) {
writeHealthResponse(w, errors.New("unable to perform evaluation"), struct{}{})
return
}
pluginStatuses := s.manager.PluginStatus()
// Ensure that bundles (if configured, and requested to be included in the result)
// have been activated successfully. This will include discovery bundles as well as
// normal bundles that are configured.
if includeBundleStatus && !s.bundlesReady(pluginStatuses) {
// For backwards compatibility we don't return a payload with statuses for the bundle endpoint
writeHealthResponse(w, errors.New("not all configured bundles have been activated"), struct{}{})
return
}
if includePluginStatus {
// Ensure that all plugins (if requested to be included in the result) have an OK status.
hasErr := false
for _, status := range pluginStatuses {
if status.State != plugins.StateOK {
hasErr = true
break
}
}
if hasErr {
writeHealthResponse(w, errors.New("not all plugins in OK state"), struct{}{})
return
}
}
writeHealthResponse(w, nil, struct{}{})
}
func writeHealthResponse(w http.ResponseWriter, err error, payload interface{}) {
status := http.StatusOK
if err != nil {
status = http.StatusInternalServerError
}
writer.JSON(w, status, payload, false)
}
func (s *Server) v1CompilePost(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
explainMode := getExplain(r.URL.Query()[types.ParamExplainV1], types.ExplainOffV1)
includeMetrics := getBoolParam(r.URL, types.ParamMetricsV1, true)
includeInstrumentation := getBoolParam(r.URL, types.ParamInstrumentV1, true)
m := metrics.New()
m.Timer(metrics.RegoQueryParse).Start()
request, reqErr := readInputCompilePostV1(r.Body)
if reqErr != nil {
writer.Error(w, http.StatusBadRequest, reqErr)
return
}
m.Timer(metrics.RegoQueryParse).Stop()
txn, err := s.store.NewTransaction(ctx)
if err != nil {
writer.ErrorAuto(w, err)
return
}
defer s.store.Abort(ctx, txn)
var buf *topdown.BufferTracer
if explainMode != types.ExplainOffV1 {
buf = topdown.NewBufferTracer()
}
eval := rego.New(
rego.Compiler(s.getCompiler()),
rego.Store(s.store),
rego.Transaction(txn),
rego.ParsedQuery(request.Query),
rego.ParsedInput(request.Input),
rego.ParsedUnknowns(request.Unknowns),
rego.Tracer(buf),
rego.Instrument(includeInstrumentation),
rego.Metrics(m),
rego.Runtime(s.runtime),
rego.UnsafeBuiltins(unsafeBuiltinsMap),
)
pq, err := eval.Partial(ctx)
if err != nil {
switch err := err.(type) {
case ast.Errors:
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, types.MsgCompileModuleError).WithASTErrors(err))
default:
writer.ErrorAuto(w, err)
}
return
}
result := types.CompileResponseV1{}
if includeMetrics || includeInstrumentation {
result.Metrics = m.All()
}
if explainMode != types.ExplainOffV1 {
result.Explanation = s.getExplainResponse(explainMode, *buf, pretty)
}
var i interface{} = types.PartialEvaluationResultV1{
Queries: pq.Queries,
Support: pq.Support,
}
result.Result = &i
writer.JSON(w, 200, result, pretty)
}
func (s *Server) v1DataGet(w http.ResponseWriter, r *http.Request) {
m := metrics.New()
m.Timer(metrics.ServerHandler).Start()
decisionID := s.generateDecisionID()
ctx := r.Context()
vars := mux.Vars(r)
urlPath := vars["path"]
watch := getWatch(r.URL.Query()[types.ParamWatchV1])
if watch {
s.watchQuery(stringPathToDataRef(urlPath).String(), w, r, true)
return
}
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
explainMode := getExplain(r.URL.Query()["explain"], types.ExplainOffV1)
includeMetrics := getBoolParam(r.URL, types.ParamMetricsV1, true)
includeInstrumentation := getBoolParam(r.URL, types.ParamInstrumentV1, true)
provenance := getBoolParam(r.URL, types.ParamProvenanceV1, true)
m.Timer(metrics.RegoInputParse).Start()
inputs := r.URL.Query()[types.ParamInputV1]
var input ast.Value
if len(inputs) > 0 {
var err error
input, err = readInputGetV1(inputs[len(inputs)-1])
if err != nil {
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
return
}
}
var goInput *interface{}
if input != nil {
x, err := ast.JSON(input)
if err != nil {
writer.ErrorString(w, http.StatusInternalServerError, types.CodeInvalidParameter, errors.Wrapf(err, "could not marshal input"))
return
}
goInput = &x
}
m.Timer(metrics.RegoInputParse).Stop()
// Prepare for query.
txn, err := s.store.NewTransaction(ctx)
if err != nil {
writer.ErrorAuto(w, err)
return
}
defer s.store.Abort(ctx, txn)
logger := s.getDecisionLogger()
var buf *topdown.BufferTracer
if explainMode != types.ExplainOffV1 {
buf = topdown.NewBufferTracer()
}
pqID := "v1DataGet::" + urlPath
preparedQuery, ok := s.getCachedPreparedEvalQuery(pqID, m)
if !ok {
rego := rego.New(
rego.Compiler(s.getCompiler()),
rego.Store(s.store),
rego.Transaction(txn),
rego.ParsedInput(input),
rego.Query(stringPathToDataRef(urlPath).String()),
rego.Metrics(m),
rego.Tracer(buf),
rego.Instrument(includeInstrumentation),
rego.Runtime(s.runtime),
rego.UnsafeBuiltins(unsafeBuiltinsMap),
)
pq, err := rego.PrepareForEval(ctx)
if err != nil {
_ = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, nil, err, m)
writer.ErrorAuto(w, err)
return
}
preparedQuery = &pq
s.preparedEvalQueries.Insert(pqID, preparedQuery)
}
rs, err := preparedQuery.Eval(
ctx,
rego.EvalTransaction(txn),
rego.EvalParsedInput(input),
rego.EvalMetrics(m),
rego.EvalTracer(buf),
)
m.Timer(metrics.ServerHandler).Stop()
// Handle results.
if err != nil {
_ = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, nil, err, m)
writer.ErrorAuto(w, err)
return
}
result := types.DataResponseV1{
DecisionID: decisionID,
}
if includeMetrics || includeInstrumentation {
result.Metrics = m.All()
}
if provenance {
result.Provenance = s.getProvenance()
}
if len(rs) == 0 {
if explainMode == types.ExplainFullV1 {
result.Explanation, err = types.NewTraceV1(*buf, pretty)
if err != nil {
writer.ErrorAuto(w, err)
}
}
err = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, nil, nil, m)
if err != nil {
writer.ErrorAuto(w, err)
return
}
writer.JSON(w, 200, result, pretty)
return
}
result.Result = &rs[0].Expressions[0].Value
if explainMode != types.ExplainOffV1 {
result.Explanation = s.getExplainResponse(explainMode, *buf, pretty)
}
err = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, result.Result, nil, m)
if err != nil {
writer.ErrorAuto(w, err)
return
}
writer.JSON(w, 200, result, pretty)
}
func (s *Server) v1DataPatch(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
vars := mux.Vars(r)
ops := []types.PatchV1{}
if err := util.NewJSONDecoder(r.Body).Decode(&ops); err != nil {
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
return
}
patches, err := s.prepareV1PatchSlice(vars["path"], ops)
if err != nil {
writer.ErrorAuto(w, err)
return
}
txn, err := s.store.NewTransaction(ctx, storage.WriteParams)
if err != nil {
writer.ErrorAuto(w, err)
return
}
for _, patch := range patches {
if err := s.checkPathScope(ctx, txn, patch.path); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
if err := s.store.Write(ctx, txn, patch.op, patch.path, patch.value); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
}
if err := ast.CheckPathConflicts(s.getCompiler(), storage.NonEmpty(ctx, s.store, txn)); len(err) > 0 {
s.store.Abort(ctx, txn)
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
return
}
if err := s.store.Commit(ctx, txn); err != nil {
writer.ErrorAuto(w, err)
} else {
writer.Bytes(w, 204, nil)
}
}
func (s *Server) v1DataPost(w http.ResponseWriter, r *http.Request) {
m := metrics.New()
m.Timer(metrics.ServerHandler).Start()
decisionID := s.generateDecisionID()
ctx := r.Context()
vars := mux.Vars(r)
urlPath := vars["path"]
watch := getWatch(r.URL.Query()[types.ParamWatchV1])
if watch {
s.watchQuery(stringPathToDataRef(urlPath).String(), w, r, true)
return
}
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
explainMode := getExplain(r.URL.Query()[types.ParamExplainV1], types.ExplainOffV1)
includeMetrics := getBoolParam(r.URL, types.ParamMetricsV1, true)
includeInstrumentation := getBoolParam(r.URL, types.ParamInstrumentV1, true)
partial := getBoolParam(r.URL, types.ParamPartialV1, true)
provenance := getBoolParam(r.URL, types.ParamProvenanceV1, true)
m.Timer(metrics.RegoInputParse).Start()
input, err := readInputPostV1(r)
if err != nil {
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
return
}
var goInput *interface{}
if input != nil {
x, err := ast.JSON(input)
if err != nil {
writer.ErrorString(w, http.StatusInternalServerError, types.CodeInvalidParameter, errors.Wrapf(err, "could not marshal input"))
return
}
goInput = &x
}
m.Timer(metrics.RegoInputParse).Stop()
txn, err := s.store.NewTransaction(ctx)
if err != nil {
writer.ErrorAuto(w, err)
return
}
defer s.store.Abort(ctx, txn)
logger := s.getDecisionLogger()
opts := []func(*rego.Rego){
rego.Compiler(s.getCompiler()),
rego.Store(s.store),
}
var buf *topdown.BufferTracer
if explainMode != types.ExplainOffV1 {
buf = topdown.NewBufferTracer()
}
pqID := "v1DataPost::"
if partial {
pqID += "partial::"
}
pqID += urlPath
preparedQuery, ok := s.getCachedPreparedEvalQuery(pqID, m)
if !ok {
rego, err := s.makeRego(ctx, partial, txn, input, urlPath, m, includeInstrumentation, buf, opts)
if err != nil {
_ = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, nil, err, m)
writer.ErrorAuto(w, err)
return
}
pq, err := rego.PrepareForEval(ctx)
if err != nil {
_ = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, nil, err, m)
writer.ErrorAuto(w, err)
return
}
preparedQuery = &pq
s.preparedEvalQueries.Insert(pqID, preparedQuery)
}
rs, err := preparedQuery.Eval(
ctx,
rego.EvalTransaction(txn),
rego.EvalParsedInput(input),
rego.EvalMetrics(m),
rego.EvalTracer(buf),
)
m.Timer(metrics.ServerHandler).Stop()
// Handle results.
if err != nil {
_ = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, nil, err, m)
writer.ErrorAuto(w, err)
return
}
result := types.DataResponseV1{
DecisionID: decisionID,
}
if includeMetrics || includeInstrumentation {
result.Metrics = m.All()
}
if provenance {
result.Provenance = s.getProvenance()
}
if len(rs) == 0 {
if explainMode == types.ExplainFullV1 {
result.Explanation, err = types.NewTraceV1(*buf, pretty)
if err != nil {
writer.ErrorAuto(w, err)
}
}
err = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, nil, nil, m)
if err != nil {
writer.ErrorAuto(w, err)
return
}
writer.JSON(w, 200, result, pretty)
return
}
result.Result = &rs[0].Expressions[0].Value
if explainMode != types.ExplainOffV1 {
result.Explanation = s.getExplainResponse(explainMode, *buf, pretty)
}
err = logger.Log(ctx, txn, decisionID, r.RemoteAddr, urlPath, "", goInput, result.Result, nil, m)
if err != nil {
writer.ErrorAuto(w, err)
return
}
writer.JSON(w, 200, result, pretty)
}
func (s *Server) v1DataPut(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
vars := mux.Vars(r)
var value interface{}
if err := util.NewJSONDecoder(r.Body).Decode(&value); err != nil {
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
return
}
path, ok := storage.ParsePathEscaped("/" + strings.Trim(vars["path"], "/"))
if !ok {
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, "bad path: %v", vars["path"]))
return
}
txn, err := s.store.NewTransaction(ctx, storage.WriteParams)
if err != nil {
writer.ErrorAuto(w, err)
return
}
if err := s.checkPathScope(ctx, txn, path); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
_, err = s.store.Read(ctx, txn, path)
if err != nil {
if !storage.IsNotFound(err) {
s.abortAuto(ctx, txn, w, err)
return
}
if err := storage.MakeDir(ctx, s.store, txn, path[:len(path)-1]); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
} else if r.Header.Get("If-None-Match") == "*" {
s.store.Abort(ctx, txn)
writer.Bytes(w, 304, nil)
return
}
if err := s.store.Write(ctx, txn, storage.AddOp, path, value); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
if err := ast.CheckPathConflicts(s.getCompiler(), storage.NonEmpty(ctx, s.store, txn)); len(err) > 0 {
s.store.Abort(ctx, txn)
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
return
}
if err := s.store.Commit(ctx, txn); err != nil {
writer.ErrorAuto(w, err)
} else {
writer.Bytes(w, 204, nil)
}
}
func (s *Server) v1DataDelete(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
vars := mux.Vars(r)
path, ok := storage.ParsePathEscaped("/" + strings.Trim(vars["path"], "/"))
if !ok {
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, "bad path: %v", vars["path"]))
return
}
txn, err := s.store.NewTransaction(ctx, storage.WriteParams)
if err != nil {
writer.ErrorAuto(w, err)
return
}
if err := s.checkPathScope(ctx, txn, path); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
_, err = s.store.Read(ctx, txn, path)
if err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
if err := s.store.Write(ctx, txn, storage.RemoveOp, path, nil); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
if err := s.store.Commit(ctx, txn); err != nil {
writer.ErrorAuto(w, err)
} else {
writer.Bytes(w, 204, nil)
}
}
func (s *Server) v1PoliciesDelete(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
vars := mux.Vars(r)
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
includeMetrics := getBoolParam(r.URL, types.ParamPrettyV1, true)
id := vars["path"]
m := metrics.New()
txn, err := s.store.NewTransaction(ctx, storage.WriteParams)
if err != nil {
writer.ErrorAuto(w, err)
return
}
if err := s.checkPolicyIDScope(ctx, txn, id); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
modules, err := s.loadModules(ctx, txn)
if err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
delete(modules, id)
c := ast.NewCompiler().SetErrorLimit(s.errLimit)
m.Timer(metrics.RegoModuleCompile).Start()
if c.Compile(modules); c.Failed() {
s.abort(ctx, txn, func() {
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidOperation, types.MsgCompileModuleError).WithASTErrors(c.Errors))
})
return
}
m.Timer(metrics.RegoModuleCompile).Stop()
if err := s.store.DeletePolicy(ctx, txn, id); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
if err := s.store.Commit(ctx, txn); err != nil {
writer.ErrorAuto(w, err)
return
}
response := types.PolicyDeleteResponseV1{}
if includeMetrics {
response.Metrics = m.All()
}
writer.JSON(w, http.StatusOK, response, pretty)
}
func (s *Server) v1PoliciesGet(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
vars := mux.Vars(r)
path := vars["path"]
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
txn, err := s.store.NewTransaction(ctx)
if err != nil {
writer.ErrorAuto(w, err)
return
}
defer s.store.Abort(ctx, txn)
bs, err := s.store.GetPolicy(ctx, txn, path)
if err != nil {
writer.ErrorAuto(w, err)
return
}
c := s.getCompiler()
response := types.PolicyGetResponseV1{
Result: types.PolicyV1{
ID: path,
Raw: string(bs),
AST: c.Modules[path],
},
}
writer.JSON(w, http.StatusOK, response, pretty)
}
func (s *Server) v1PoliciesList(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
txn, err := s.store.NewTransaction(ctx)
if err != nil {
writer.ErrorAuto(w, err)
return
}
defer s.store.Abort(ctx, txn)
policies := []types.PolicyV1{}
c := s.getCompiler()
// Only return policies from the store, the compiler
// may contain additional partially compiled modules.
ids, err := s.store.ListPolicies(ctx, txn)
if err != nil {
writer.ErrorAuto(w, err)
return
}
for _, id := range ids {
bs, err := s.store.GetPolicy(ctx, txn, id)
if err != nil {
writer.ErrorAuto(w, err)
return
}
policy := types.PolicyV1{
ID: id,
Raw: string(bs),
AST: c.Modules[id],
}
policies = append(policies, policy)
}
response := types.PolicyListResponseV1{
Result: policies,
}
writer.JSON(w, http.StatusOK, response, pretty)
}
func (s *Server) v1PoliciesPut(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
vars := mux.Vars(r)
path := vars["path"]
includeMetrics := getBoolParam(r.URL, types.ParamMetricsV1, true)
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
m := metrics.New()
m.Timer("server_read_bytes").Start()
buf, err := ioutil.ReadAll(r.Body)
if err != nil {
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
return
}
m.Timer("server_read_bytes").Stop()
txn, err := s.store.NewTransaction(ctx, storage.WriteParams)
if err != nil {
writer.ErrorAuto(w, err)
return
}
if bs, err := s.store.GetPolicy(ctx, txn, path); err != nil {
if !storage.IsNotFound(err) {
s.abortAuto(ctx, txn, w, err)
return
}
} else if bytes.Equal(buf, bs) {
s.store.Abort(ctx, txn)
response := types.PolicyPutResponseV1{}
if includeMetrics {
response.Metrics = m.All()
}
writer.JSON(w, http.StatusOK, response, pretty)
return
}
m.Timer(metrics.RegoModuleParse).Start()
parsedMod, err := ast.ParseModule(path, string(buf))
m.Timer(metrics.RegoModuleParse).Stop()
if err != nil {
s.store.Abort(ctx, txn)
switch err := err.(type) {
case ast.Errors:
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, types.MsgCompileModuleError).WithASTErrors(err))
default:
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
}
return
}
if parsedMod == nil {
s.store.Abort(ctx, txn)
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, "empty module"))
return
}
if err := s.checkPolicyPackageScope(ctx, txn, parsedMod.Package); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
modules, err := s.loadModules(ctx, txn)
if err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
modules[path] = parsedMod
c := ast.NewCompiler().SetErrorLimit(s.errLimit).WithPathConflictsCheck(storage.NonEmpty(ctx, s.store, txn))
m.Timer(metrics.RegoModuleCompile).Start()
if c.Compile(modules); c.Failed() {
s.abort(ctx, txn, func() {
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, types.MsgCompileModuleError).WithASTErrors(c.Errors))
})
return
}
m.Timer(metrics.RegoModuleCompile).Stop()
if err := s.store.UpsertPolicy(ctx, txn, path, buf); err != nil {
s.abortAuto(ctx, txn, w, err)
return
}
if err := s.store.Commit(ctx, txn); err != nil {
writer.ErrorAuto(w, err)
return
}
response := types.PolicyPutResponseV1{}
if includeMetrics {
response.Metrics = m.All()
}
writer.JSON(w, http.StatusOK, response, pretty)
}
func (s *Server) v1QueryGet(w http.ResponseWriter, r *http.Request) {
m := metrics.New()
decisionID := s.generateDecisionID()
ctx := r.Context()
values := r.URL.Query()
qStrs := values[types.ParamQueryV1]
if len(qStrs) == 0 {
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, "missing parameter 'q'"))
return
}
qStr := qStrs[len(qStrs)-1]
parsedQuery, err := validateQuery(qStr)
if err != nil {
switch err := err.(type) {
case ast.Errors:
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, types.MsgParseQueryError).WithASTErrors(err))
return
default:
writer.ErrorAuto(w, err)
return
}
}
watch := getWatch(r.URL.Query()[types.ParamWatchV1])
if watch {
s.watchQuery(qStr, w, r, false)
return
}
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
explainMode := getExplain(r.URL.Query()["explain"], types.ExplainOffV1)
includeMetrics := getBoolParam(r.URL, types.ParamMetricsV1, true)
includeInstrumentation := getBoolParam(r.URL, types.ParamInstrumentV1, true)
txn, err := s.store.NewTransaction(ctx)
if err != nil {
writer.ErrorAuto(w, err)
return
}
defer s.store.Abort(ctx, txn)
results, err := s.execQuery(ctx, r, txn, decisionID, parsedQuery, nil, m, explainMode, includeMetrics, includeInstrumentation, pretty)
if err != nil {
switch err := err.(type) {
case ast.Errors:
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, types.MsgCompileQueryError).WithASTErrors(err))
default:
writer.ErrorAuto(w, err)
}
return
}
writer.JSON(w, 200, results, pretty)
}
func (s *Server) v1QueryPost(w http.ResponseWriter, r *http.Request) {
m := metrics.New()
decisionID := s.generateDecisionID()
ctx := r.Context()
var request types.QueryRequestV1
err := util.NewJSONDecoder(r.Body).Decode(&request)
if err != nil {
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, "error(s) occurred while decoding request: %v", err.Error()))
return
}
qStr := request.Query
parsedQuery, err := validateQuery(qStr)
if err != nil {
switch err := err.(type) {
case ast.Errors:
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, types.MsgParseQueryError).WithASTErrors(err))
return
default:
writer.ErrorAuto(w, err)
return
}
}
watch := getWatch(r.URL.Query()[types.ParamWatchV1])
if watch {
s.watchQuery(qStr, w, r, false)
return
}
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
explainMode := getExplain(r.URL.Query()["explain"], types.ExplainOffV1)
includeMetrics := getBoolParam(r.URL, types.ParamMetricsV1, true)
includeInstrumentation := getBoolParam(r.URL, types.ParamInstrumentV1, true)
txn, err := s.store.NewTransaction(ctx)
if err != nil {
writer.ErrorAuto(w, err)
return
}
defer s.store.Abort(ctx, txn)
results, err := s.execQuery(ctx, r, txn, decisionID, parsedQuery, nil, m, explainMode, includeMetrics, includeInstrumentation, pretty)
if err != nil {
switch err := err.(type) {
case ast.Errors:
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, types.MsgCompileQueryError).WithASTErrors(err))
default:
writer.ErrorAuto(w, err)
}
return
}
writer.JSON(w, 200, results, pretty)
}
func (s *Server) watchQuery(query string, w http.ResponseWriter, r *http.Request, data bool) {
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
explainMode := getExplain(r.URL.Query()["explain"], types.ExplainOffV1)
includeMetrics := getBoolParam(r.URL, types.ParamMetricsV1, true)
includeInstrumentation := getBoolParam(r.URL, types.ParamInstrumentV1, true)
watch := s.watcher.NewQuery(query).WithInstrumentation(includeInstrumentation).WithRuntime(s.runtime)
err := watch.Start()
if err != nil {
writer.ErrorAuto(w, err)
return
}
defer watch.Stop()
h, ok := w.(http.Hijacker)
if !ok {
writer.ErrorString(w, http.StatusInternalServerError, "server does not support hijacking", errors.New("streaming not supported"))
return
}
conn, bufrw, err := h.Hijack()
if err != nil {
writer.ErrorAuto(w, err)
return
}
defer conn.Close()
defer bufrw.Flush()
// Manually write the HTTP header since we can't use the original ResponseWriter.
bufrw.WriteString(fmt.Sprintf("%s %d OK\n", r.Proto, http.StatusOK))
bufrw.WriteString("Content-Type: application/json\n")
bufrw.WriteString("Transfer-Encoding: chunked\n\n")
buf := httputil.NewChunkedWriter(bufrw)
defer buf.Close()
encoder := json.NewEncoder(buf)
if pretty {
encoder.SetIndent("", " ")
}
abort := r.Context().Done()
for {
select {
case e, ok := <-watch.C:
if !ok {
return // The channel was closed by an invalidated query.
}
r := types.WatchResponseV1{Result: e.Value}
if e.Error != nil {
r.Error = types.NewErrorV1(types.CodeEvaluation, e.Error.Error())
} else if data && len(e.Value) > 0 && len(e.Value[0].Expressions) > 0 {
r.Result = e.Value[0].Expressions[0].Value
}
if includeMetrics || includeInstrumentation {
r.Metrics = e.Metrics.All()
}
r.Explanation = s.getExplainResponse(explainMode, e.Tracer, pretty)
if err := encoder.Encode(r); err != nil {
return
}
// Flush the response writer, otherwise the notifications may not
// be sent until much later.
bufrw.Flush()
case <-abort:
return
}
}
}
func (s *Server) checkPolicyIDScope(ctx context.Context, txn storage.Transaction, id string) error {
bs, err := s.store.GetPolicy(ctx, txn, id)
if err != nil {
return err
}
module, err := ast.ParseModule(id, string(bs))
if err != nil {
return err
}
return s.checkPolicyPackageScope(ctx, txn, module.Package)
}
func (s *Server) checkPolicyPackageScope(ctx context.Context, txn storage.Transaction, pkg *ast.Package) error {
path, err := pkg.Path.Ptr()
if err != nil {
return err
}
spath, ok := storage.ParsePathEscaped("/" + path)
if !ok {
return types.BadRequestErr("invalid package path: cannot determine scope")
}
return s.checkPathScope(ctx, txn, spath)
}
func (s *Server) checkPathScope(ctx context.Context, txn storage.Transaction, path storage.Path) error {
names, err := bundle.ReadBundleNamesFromStore(ctx, s.store, txn)
if err != nil {
if !storage.IsNotFound(err) {
return err
}
return nil
}
bundleRoots := map[string][]string{}
for _, name := range names {
roots, err := bundle.ReadBundleRootsFromStore(ctx, s.store, txn, name)
if err != nil && !storage.IsNotFound(err) {
return err
}
bundleRoots[name] = roots
}
spath := strings.Trim(path.String(), "/")
for name, roots := range bundleRoots {
for _, root := range roots {
if strings.HasPrefix(spath, root) || strings.HasPrefix(root, spath) {
return types.BadRequestErr(fmt.Sprintf("path %v is owned by bundle %q", spath, name))
}
}
}
return nil
}
func (s *Server) getDecisionLogger() (logger decisionLogger) {
// For backwards compatibility use `revision` as needed.
if s.hasLegacyBundle() {
logger.revision = s.legacyRevision
} else {
logger.revisions = s.revisions
}
logger.logger = s.logger
logger.buffer = s.buffer
return logger
}
func (s *Server) getExplainResponse(explainMode types.ExplainModeV1, trace []*topdown.Event, pretty bool) (explanation types.TraceV1) {
switch explainMode {
case types.ExplainNotesV1:
var err error
explanation, err = types.NewTraceV1(lineage.Notes(trace), pretty)
if err != nil {
break
}
case types.ExplainFailsV1:
var err error
explanation, err = types.NewTraceV1(lineage.Fails(trace), pretty)
if err != nil {
break
}
case types.ExplainFullV1:
var err error
explanation, err = types.NewTraceV1(trace, pretty)
if err != nil {
break
}
}
return explanation
}
func (s *Server) abort(ctx context.Context, txn storage.Transaction, finish func()) {
s.store.Abort(ctx, txn)
finish()
}
func (s *Server) abortAuto(ctx context.Context, txn storage.Transaction, w http.ResponseWriter, err error) {
s.abort(ctx, txn, func() { writer.ErrorAuto(w, err) })
}
func (s *Server) loadModules(ctx context.Context, txn storage.Transaction) (map[string]*ast.Module, error) {
ids, err := s.store.ListPolicies(ctx, txn)
if err != nil {
return nil, err
}
modules := make(map[string]*ast.Module, len(ids))
for _, id := range ids {
bs, err := s.store.GetPolicy(ctx, txn, id)
if err != nil {
return nil, err
}
parsed, err := ast.ParseModule(id, string(bs))
if err != nil {
return nil, err
}
modules[id] = parsed
}
return modules, nil
}
func (s *Server) getCompiler() *ast.Compiler {
return s.manager.GetCompiler()
}
func (s *Server) makeRego(ctx context.Context, partial bool, txn storage.Transaction, input ast.Value, urlPath string, m metrics.Metrics, instrument bool, tracer topdown.Tracer, opts []func(*rego.Rego)) (*rego.Rego, error) {
queryPath := stringPathToDataRef(urlPath).String()
opts = append(
opts,
rego.Transaction(txn),
rego.Query(queryPath),
rego.ParsedInput(input),
rego.Metrics(m),
rego.Tracer(tracer),
rego.Instrument(instrument),
rego.Runtime(s.runtime),
rego.UnsafeBuiltins(unsafeBuiltinsMap),
)
if partial {
// pick a namespace for the query (path), doesn't really matter what it is
// as long as it is unique for each path.
namespace := fmt.Sprintf("partial[`%s`]", urlPath)
s.mtx.Lock()
defer s.mtx.Unlock()
pr, ok := s.partials[queryPath]
if !ok {
opts = append(opts, rego.PartialNamespace(namespace))
r := rego.New(opts...)
var err error
pr, err = r.PartialResult(ctx)
if err != nil {
return nil, err
}
s.partials[queryPath] = pr
}
return pr.Rego(opts...), nil
}
return rego.New(opts...), nil
}
func (s *Server) prepareV1PatchSlice(root string, ops []types.PatchV1) (result []patchImpl, err error) {
root = "/" + strings.Trim(root, "/")
for _, op := range ops {
impl := patchImpl{
value: op.Value,
}
// Map patch operation.
switch op.Op {
case "add":
impl.op = storage.AddOp
case "remove":
impl.op = storage.RemoveOp
case "replace":
impl.op = storage.ReplaceOp
default:
return nil, types.BadPatchOperationErr(op.Op)
}
// Construct patch path.
path := strings.Trim(op.Path, "/")
if len(path) > 0 {
if root == "/" {
path = root + path
} else {
path = root + "/" + path
}
} else {
path = root
}
var ok bool
impl.path, ok = parsePatchPathEscaped(path)
if !ok {
return nil, types.BadPatchPathErr(op.Path)
}
result = append(result, impl)
}
return result, nil
}
func (s *Server) generateDecisionID() string {
if s.decisionIDFactory != nil {
return s.decisionIDFactory()
}
return ""
}
func (s *Server) getProvenance() *types.ProvenanceV1 {
p := &types.ProvenanceV1{
Version: version.Version,
Vcs: version.Vcs,
Timestamp: version.Timestamp,
Hostname: version.Hostname,
}
// For backwards compatibility, if the bundles are using the old
// style config we need to fill in the older `Revision` field.
// Otherwise use the newer `Bundles` keyword.
if s.hasLegacyBundle() {
p.Revision = s.legacyRevision
} else {
p.Bundles = map[string]types.ProvenanceBundleV1{}
for name, revision := range s.revisions {
p.Bundles[name] = types.ProvenanceBundleV1{Revision: revision}
}
}
return p
}
func (s *Server) hasLegacyBundle() bool {
bp := bundlePlugin.Lookup(s.manager)
return s.legacyRevision != "" || (bp != nil && !bp.Config().IsMultiBundle())
}
func (s *Server) generateDefaultDecisionPath() string {
// Assume the path is safe to transition back to a url
p, _ := s.manager.Config.DefaultDecisionRef().Ptr()
return p
}
// parsePatchPathEscaped returns a new path for the given escaped str.
// This is based on storage.ParsePathEscaped so will do URL unescaping of
// the provided str for backwards compatibility, but also handles the
// specific escape strings defined in RFC 6901 (JSON Pointer) because
// that's what's mandated by RFC 6902 (JSON Patch).
func parsePatchPathEscaped(str string) (path storage.Path, ok bool) {
path, ok = storage.ParsePathEscaped(str)
if !ok {
return
}
for i := range path {
// RFC 6902 section 4: "[The "path" member's] value is a string containing
// a JSON-Pointer value [RFC6901] that references a location within the
// target document (the "target location") where the operation is performed."
//
// RFC 6901 section 3: "Because the characters '~' (%x7E) and '/' (%x2F)
// have special meanings in JSON Pointer, '~' needs to be encoded as '~0'
// and '/' needs to be encoded as '~1' when these characters appear in a
// reference token."
// RFC 6901 section 4: "Evaluation of each reference token begins by
// decoding any escaped character sequence. This is performed by first
// transforming any occurrence of the sequence '~1' to '/', and then
// transforming any occurrence of the sequence '~0' to '~'. By performing
// the substitutions in this order, an implementation avoids the error of
// turning '~01' first into '~1' and then into '/', which would be
// incorrect (the string '~01' correctly becomes '~1' after transformation)."
path[i] = strings.Replace(path[i], "~1", "/", -1)
path[i] = strings.Replace(path[i], "~0", "~", -1)
}
return
}
func stringPathToDataRef(s string) (r ast.Ref) {
result := ast.Ref{ast.DefaultRootDocument}
result = append(result, stringPathToRef(s)...)
return result
}
func stringPathToRef(s string) (r ast.Ref) {
if len(s) == 0 {
return r
}
p := strings.Split(s, "/")
for _, x := range p {
if x == "" {
continue
}
if y, err := url.PathUnescape(x); err == nil {
x = y
}
i, err := strconv.Atoi(x)
if err != nil {
r = append(r, ast.StringTerm(x))
} else {
r = append(r, ast.IntNumberTerm(i))
}
}
return r
}
func validateQuery(query string) (ast.Body, error) {
var body ast.Body
body, err := ast.ParseBody(query)
if err != nil {
return nil, err
}
return body, nil
}
func getBoolParam(url *url.URL, name string, ifEmpty bool) bool {
p, ok := url.Query()[name]
if !ok {
return false
}
// Query params w/o values are represented as slice (of len 1) with an
// empty string.
if len(p) == 1 && p[0] == "" {
return ifEmpty
}
for _, x := range p {
if strings.ToLower(x) == "true" {
return true
}
}
return false
}
func getWatch(p []string) (watch bool) {
return len(p) > 0
}
func getExplain(p []string, zero types.ExplainModeV1) types.ExplainModeV1 {
for _, x := range p {
switch x {
case string(types.ExplainNotesV1):
return types.ExplainNotesV1
case string(types.ExplainFullV1):
return types.ExplainFullV1
}
}
return zero
}
func readInputV0(r *http.Request) (ast.Value, error) {
bs, err := ioutil.ReadAll(r.Body)
if err != nil {
return nil, err
}
bs = bytes.TrimSpace(bs)
if len(bs) == 0 {
return nil, nil
}
var x interface{}
if strings.Contains(r.Header.Get("Content-Type"), "yaml") {
if err := util.Unmarshal(bs, &x); err != nil {
return nil, err
}
} else if err := util.UnmarshalJSON(bs, &x); err != nil {
return nil, err
}
return ast.InterfaceToValue(x)
}
func readInputGetV1(str string) (ast.Value, error) {
var input interface{}
if err := util.UnmarshalJSON([]byte(str), &input); err != nil {
return nil, errors.Wrapf(err, "parameter contains malformed input document")
}
return ast.InterfaceToValue(input)
}
func readInputPostV1(r *http.Request) (ast.Value, error) {
bs, err := ioutil.ReadAll(r.Body)
if err != nil {
return nil, err
}
if len(bs) > 0 {
ct := r.Header.Get("Content-Type")
var request types.DataRequestV1
// There is no standard for yaml mime-type so we just look for
// anything related
if strings.Contains(ct, "yaml") {
if err := util.Unmarshal(bs, &request); err != nil {
return nil, errors.Wrapf(err, "body contains malformed input document")
}
} else if err := util.UnmarshalJSON(bs, &request); err != nil {
return nil, errors.Wrapf(err, "body contains malformed input document")
}
if request.Input == nil {
return nil, nil
}
return ast.InterfaceToValue(*request.Input)
}
return nil, nil
}
type compileRequest struct {
Query ast.Body
Input ast.Value
Unknowns []*ast.Term
}
func readInputCompilePostV1(r io.ReadCloser) (*compileRequest, *types.ErrorV1) {
var request types.CompileRequestV1
err := util.NewJSONDecoder(r).Decode(&request)
if err != nil {
return nil, types.NewErrorV1(types.CodeInvalidParameter, "error(s) occurred while decoding request: %v", err.Error())
}
query, err := ast.ParseBody(request.Query)
if err != nil {
switch err := err.(type) {
case ast.Errors:
return nil, types.NewErrorV1(types.CodeInvalidParameter, types.MsgParseQueryError).WithASTErrors(err)
default:
return nil, types.NewErrorV1(types.CodeInvalidParameter, "%v: %v", types.MsgParseQueryError, err)
}
} else if len(query) == 0 {
return nil, types.NewErrorV1(types.CodeInvalidParameter, "missing required 'query' value")
}
var input ast.Value
if request.Input != nil {
input, err = ast.InterfaceToValue(*request.Input)
if err != nil {
return nil, types.NewErrorV1(types.CodeInvalidParameter, "error(s) occurred while converting input: %v", err)
}
}
var unknowns []*ast.Term
if request.Unknowns != nil {
unknowns = make([]*ast.Term, len(*request.Unknowns))
for i, s := range *request.Unknowns {
unknowns[i], err = ast.ParseTerm(s)
if err != nil {
return nil, types.NewErrorV1(types.CodeInvalidParameter, "error(s) occurred while parsing unknowns: %v", err)
}
}
}
result := &compileRequest{
Query: query,
Input: input,
Unknowns: unknowns,
}
return result, nil
}
func renderBanner(w http.ResponseWriter) {
fmt.Fprintln(w, `<pre>
________ ________ ________
|\ __ \ |\ __ \ |\ __ \
\ \ \|\ \ \ \ \|\ \ \ \ \|\ \
\ \ \\\ \ \ \ ____\ \ \ __ \
\ \ \\\ \ \ \ \___| \ \ \ \ \
\ \_______\ \ \__\ \ \__\ \__\
\|_______| \|__| \|__|\|__|
</pre>`)
fmt.Fprintln(w, "Open Policy Agent - An open source project to policy-enable your service.<br>")
fmt.Fprintln(w, "<br>")
}
func renderFooter(w http.ResponseWriter) {
fmt.Fprintln(w, "</body>")
fmt.Fprintln(w, "</html>")
}
func renderHeader(w http.ResponseWriter) {
fmt.Fprintln(w, "<html>")
fmt.Fprintln(w, "<body>")
}
func renderQueryForm(w http.ResponseWriter, qStrs []string, inputStrs []string, explain types.ExplainModeV1) {
query := ""
if len(qStrs) > 0 {
query = qStrs[len(qStrs)-1]
}
input := ""
if len(inputStrs) > 0 {
input = inputStrs[len(inputStrs)-1]
}
explainRadioCheck := []string{"", "", ""}
switch explain {
case types.ExplainOffV1:
explainRadioCheck[0] = "checked"
case types.ExplainFullV1:
explainRadioCheck[1] = "checked"
}
fmt.Fprintf(w, `
<form>
Query:<br>
<textarea rows="10" cols="50" name="q">%s</textarea><br>
<br>Input Data (JSON):<br>
<textarea rows="10" cols="50" name="input">%s</textarea><br>
<br><input type="submit" value="Submit"> Explain:
<input type="radio" name="explain" value="off" %v>Off
<input type="radio" name="explain" value="full" %v>Full
</form>`, template.HTMLEscapeString(query), template.HTMLEscapeString(input), explainRadioCheck[0], explainRadioCheck[1])
}
func renderQueryResult(w io.Writer, results interface{}, err error, t0 time.Time) {
buf, err2 := json.MarshalIndent(results, "", " ")
d := time.Since(t0)
if err != nil {
fmt.Fprintf(w, "Query error (took %v): <pre>%v</pre>", d, template.HTMLEscapeString(err.Error()))
} else if err2 != nil {
fmt.Fprintf(w, "JSON marshal error: <pre>%v</pre>", template.HTMLEscapeString(err.Error()))
} else {
fmt.Fprintf(w, "Query results (took %v):<br>", d)
fmt.Fprintf(w, "<pre>%s</pre>", template.HTMLEscapeString(string(buf)))
}
}
func renderVersion(w http.ResponseWriter) {
fmt.Fprintln(w, "Version: "+version.Version+"<br>")
fmt.Fprintln(w, "Build Commit: "+version.Vcs+"<br>")
fmt.Fprintln(w, "Build Timestamp: "+version.Timestamp+"<br>")
fmt.Fprintln(w, "Build Hostname: "+version.Hostname+"<br>")
fmt.Fprintln(w, "<br>")
}
type decisionLogger struct {
revisions map[string]string
revision string // Deprecated: Use `revisions` instead.
logger func(context.Context, *Info) error
buffer Buffer
}
func (l decisionLogger) Log(ctx context.Context, txn storage.Transaction, decisionID, remoteAddr, path string, query string, input *interface{}, results *interface{}, err error, m metrics.Metrics) error {
bundles := map[string]BundleInfo{}
for name, rev := range l.revisions {
bundles[name] = BundleInfo{Revision: rev}
}
info := &Info{
Txn: txn,
Revision: l.revision,
Bundles: bundles,
Timestamp: time.Now().UTC(),
DecisionID: decisionID,
RemoteAddr: remoteAddr,
Path: path,
Query: query,
Input: input,
Results: results,
Error: err,
Metrics: m,
}
if l.logger != nil {
if err := l.logger(ctx, info); err != nil {
return errors.Wrap(err, "decision_logs")
}
}
if l.buffer != nil {
l.buffer.Push(info)
}
return nil
}
type patchImpl struct {
path storage.Path
op storage.PatchOp
value interface{}
}
func parseURL(s string, useHTTPSByDefault bool) (*url.URL, error) {
if !strings.Contains(s, "://") {
scheme := "http://"
if useHTTPSByDefault {
scheme = "https://"
}
s = scheme + s
}
return url.Parse(s)
}