Files
releases/server/server.go
T
Torin Sandall a55a542809 Add Partial function to Rego objects
Partial allows callers to partially evaluate a query and obtain the
resulting partially evaluated queries and support modules from the
evaluation engine.

This is a lower level interface compared to the other API (PartialEval)
that returns a result which can be evaluated normally (which takes
advantage of partial evaluation for optimization purposes.) This new
interface is targetted at use cases where callers are not interested in
a binary policy decision but instead need the conditions that should be
evaluated at a later time.

Deprecate the old PartialEval function and rename it to PartialResult to
avoid some (but certainly not all) confusion.

Signed-off-by: Torin Sandall <torinsandall@gmail.com>
2018-06-28 08:11:45 -07:00

1796 lines
47 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"
"encoding/json"
"fmt"
"io"
"io/ioutil"
"net"
"net/http"
"net/http/httputil"
"os"
"strconv"
"strings"
"sync"
"time"
"crypto/tls"
"net/url"
"github.com/gorilla/mux"
"github.com/open-policy-agent/opa/ast"
"github.com/open-policy-agent/opa/metrics"
"github.com/open-policy-agent/opa/plugins"
"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/util"
"github.com/open-policy-agent/opa/version"
"github.com/open-policy-agent/opa/watch"
"github.com/pkg/errors"
"github.com/prometheus/client_golang/prometheus"
"github.com/prometheus/client_golang/prometheus/promhttp"
)
// 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 = iota
)
// 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 = iota
)
// 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"
PromHandlerIndex = "index"
PromHandlerCatch = "catchall"
)
var systemMainPath = ast.MustParseRef("data.system.main")
// Server represents an instance of OPA running in server mode.
type Server struct {
Handler http.Handler
addrs []string
insecureAddr string
authentication AuthenticationScheme
authorization AuthorizationScheme
cert *tls.Certificate
mtx sync.RWMutex
partials map[string]rego.PartialResult
store storage.Store
manager *plugins.Manager
watcher *watch.Watcher
decisionIDFactory func() string
diagnostics Buffer
revision string
logger func(context.Context, *Info)
errLimit int
}
type cachedCompiler struct {
queryPath string
compiler *ast.Compiler
}
// 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{}
promRegistry := prometheus.NewRegistry()
duration := prometheus.NewHistogramVec(
prometheus.HistogramOpts{
Name: "http_request_duration_seconds",
Help: "A histogram of duration for requests.",
},
[]string{"code", "handler", "method"},
)
v0DataDur := duration.MustCurryWith(prometheus.Labels{"handler": PromHandlerV0Data})
v1DataDur := duration.MustCurryWith(prometheus.Labels{"handler": PromHandlerV1Data})
v1PoliciesDur := duration.MustCurryWith(prometheus.Labels{"handler": PromHandlerV1Policies})
v1QueryDur := duration.MustCurryWith(prometheus.Labels{"handler": PromHandlerV1Query})
indexDur := duration.MustCurryWith(prometheus.Labels{"handler": PromHandlerIndex})
catchAllDur := duration.MustCurryWith(prometheus.Labels{"handler": PromHandlerCatch})
promRegistry.MustRegister(duration)
// Initialize HTTP handlers.
router := mux.NewRouter()
router.UseEncodedPath()
router.Handle("/metrics", promhttp.HandlerFor(promRegistry, promhttp.HandlerOpts{})).Methods(http.MethodGet)
s.registerHandler(router, 0, "/data/{path:.+}", http.MethodPost, promhttp.InstrumentHandlerDuration(v0DataDur, http.HandlerFunc(s.v0DataPost)))
s.registerHandler(router, 0, "/data", http.MethodPost, promhttp.InstrumentHandlerDuration(v0DataDur, http.HandlerFunc(s.v0DataPost)))
s.registerHandler(router, 1, "/data/system/diagnostics", http.MethodGet, promhttp.InstrumentHandlerDuration(v1DataDur, http.HandlerFunc(s.v1DiagnosticsGet)))
s.registerHandler(router, 1, "/data/{path:.+}", http.MethodDelete, promhttp.InstrumentHandlerDuration(v1DataDur, http.HandlerFunc(s.v1DataDelete)))
s.registerHandler(router, 1, "/data/{path:.+}", http.MethodPut, promhttp.InstrumentHandlerDuration(v1DataDur, http.HandlerFunc(s.v1DataPut)))
s.registerHandler(router, 1, "/data", http.MethodPut, promhttp.InstrumentHandlerDuration(v1DataDur, http.HandlerFunc(s.v1DataPut)))
s.registerHandler(router, 1, "/data/{path:.+}", http.MethodGet, promhttp.InstrumentHandlerDuration(v1DataDur, http.HandlerFunc(s.v1DataGet)))
s.registerHandler(router, 1, "/data", http.MethodGet, promhttp.InstrumentHandlerDuration(v1DataDur, http.HandlerFunc(s.v1DataGet)))
s.registerHandler(router, 1, "/data/{path:.+}", http.MethodPatch, promhttp.InstrumentHandlerDuration(v1DataDur, http.HandlerFunc(s.v1DataPatch)))
s.registerHandler(router, 1, "/data", http.MethodPatch, promhttp.InstrumentHandlerDuration(v1DataDur, http.HandlerFunc(s.v1DataPatch)))
s.registerHandler(router, 1, "/data/{path:.+}", http.MethodPost, promhttp.InstrumentHandlerDuration(v1DataDur, http.HandlerFunc(s.v1DataPost)))
s.registerHandler(router, 1, "/data", http.MethodPost, promhttp.InstrumentHandlerDuration(v1DataDur, http.HandlerFunc(s.v1DataPost)))
s.registerHandler(router, 1, "/policies", http.MethodGet, promhttp.InstrumentHandlerDuration(v1PoliciesDur, http.HandlerFunc(s.v1PoliciesList)))
s.registerHandler(router, 1, "/policies/{path:.+}", http.MethodDelete, promhttp.InstrumentHandlerDuration(v1PoliciesDur, http.HandlerFunc(s.v1PoliciesDelete)))
s.registerHandler(router, 1, "/policies/{path:.+}", http.MethodGet, promhttp.InstrumentHandlerDuration(v1PoliciesDur, http.HandlerFunc(s.v1PoliciesGet)))
s.registerHandler(router, 1, "/policies/{path:.+}", http.MethodPut, promhttp.InstrumentHandlerDuration(v1PoliciesDur, http.HandlerFunc(s.v1PoliciesPut)))
s.registerHandler(router, 1, "/query", http.MethodGet, promhttp.InstrumentHandlerDuration(v1QueryDur, http.HandlerFunc(s.v1QueryGet)))
router.HandleFunc("/", promhttp.InstrumentHandlerDuration(indexDur, http.HandlerFunc(s.unversionedPost))).Methods(http.MethodPost)
router.HandleFunc("/", promhttp.InstrumentHandlerDuration(indexDur, http.HandlerFunc(s.indexGet))).Methods(http.MethodGet)
// These are catch all handlers that respond 405 for resources that exist but the method is not allowed
router.HandleFunc("/v0/data/{path:.*}", promhttp.InstrumentHandlerDuration(catchAllDur, http.HandlerFunc(writer.HTTPStatus(405)))).Methods(http.MethodGet, http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodPatch, http.MethodPut, http.MethodTrace)
router.HandleFunc("/v0/data", promhttp.InstrumentHandlerDuration(catchAllDur, http.HandlerFunc(writer.HTTPStatus(405)))).Methods(http.MethodGet, http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodPatch, http.MethodPut,
http.MethodTrace)
// v1 Data catch all
router.HandleFunc("/v1/data/{path:.*}", promhttp.InstrumentHandlerDuration(catchAllDur, http.HandlerFunc(writer.HTTPStatus(405)))).Methods(http.MethodHead,
http.MethodConnect, http.MethodOptions, http.MethodTrace)
router.HandleFunc("/v1/data", promhttp.InstrumentHandlerDuration(catchAllDur, http.HandlerFunc(writer.HTTPStatus(405)))).Methods(http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodTrace)
// Policies catch all
router.HandleFunc("/v1/policies", promhttp.InstrumentHandlerDuration(catchAllDur, http.HandlerFunc(writer.HTTPStatus(405)))).Methods(http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodTrace, http.MethodPost, http.MethodPut,
http.MethodPatch)
// Policies (/policies/{path.+} catch all
router.HandleFunc("/v1/policies/{path:.*}", promhttp.InstrumentHandlerDuration(catchAllDur, http.HandlerFunc(writer.HTTPStatus(405)))).Methods(http.MethodHead,
http.MethodConnect, http.MethodOptions, http.MethodTrace, http.MethodPost)
// Query catch all
router.HandleFunc("/v1/query/{path:.*}", promhttp.InstrumentHandlerDuration(catchAllDur, http.HandlerFunc(writer.HTTPStatus(405)))).Methods(http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodTrace, http.MethodPost, http.MethodPut, http.MethodPatch)
router.HandleFunc("/v1/query", promhttp.InstrumentHandlerDuration(catchAllDur, http.HandlerFunc(writer.HTTPStatus(405)))).Methods(http.MethodHead,
http.MethodConnect, http.MethodDelete, http.MethodOptions, http.MethodTrace, http.MethodPost, http.MethodPut, http.MethodPatch)
s.Handler = router
return &s
}
// Init initializes the server. This function MUST be called before Loop.
func (s *Server) Init(ctx context.Context) (*Server, error) {
// 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)
}
switch s.authentication {
case AuthenticationToken:
s.Handler = identifier.NewTokenBased(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{}
return s, s.store.Commit(ctx, txn)
}
// 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
}
// WithStore sets the storage used by the server.
func (s *Server) WithStore(store storage.Store) *Server {
s.store = store
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
}
// WithDiagnosticsBuffer sets the diagnostics buffer used by the server. DEPRECATED.
func (s *Server) WithDiagnosticsBuffer(buf Buffer) *Server {
s.diagnostics = buf
return s
}
// WithDecisionLogger sets the decision logger used by the server.
func (s *Server) WithDecisionLogger(logger func(context.Context, *Info)) *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
}
// 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
switch parsedURL.Scheme {
case "unix":
loop, err = s.getListenerForUNIXSocket(parsedURL)
case "http":
loop, err = s.getListenerForHTTPServer(parsedURL)
case "https":
loop, err = s.getListenerForHTTPSServer(parsedURL)
default:
err = fmt.Errorf("invalid url scheme %q", parsedURL.Scheme)
}
if err != nil {
return nil, err
}
loops = append(loops, loop)
}
if s.insecureAddr != "" {
parsedURL, err := parseURL(s.insecureAddr, false)
if err != nil {
return nil, err
}
loop, err := s.getListenerForHTTPServer(parsedURL)
if err != nil {
return nil, err
}
loops = append(loops, loop)
}
return loops, nil
}
func (s *Server) getListenerForHTTPServer(u *url.URL) (Loop, error) {
httpServer := http.Server{
Addr: u.Host,
Handler: s.Handler,
}
httpLoop := func() error { return httpServer.ListenAndServe() }
return httpLoop, nil
}
func (s *Server) getListenerForHTTPSServer(u *url.URL) (Loop, error) {
if s.cert == nil {
return 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},
},
}
httpsLoop := func() error { return httpsServer.ListenAndServeTLS("", "") }
return httpsLoop, nil
}
func (s *Server) getListenerForUNIXSocket(u *url.URL) (Loop, 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, err
}
domainSocketLoop := func() error { return domainSocketServer.Serve(unixListener) }
return domainSocketLoop, nil
}
func (s *Server) execQuery(ctx context.Context, r *http.Request, query string, input ast.Value, explainMode types.ExplainModeV1, includeMetrics, includeInstrumentation, pretty bool) (results types.QueryResponseV1, err error) {
diagLogger := s.evalDiagnosticPolicy(r)
var buf *topdown.BufferTracer
if explainMode != types.ExplainOffV1 || diagLogger.Explain() {
buf = topdown.NewBufferTracer()
}
var instrument bool
if includeInstrumentation || diagLogger.Instrument() {
instrument = true
}
m := metrics.New()
compiler := s.getCompiler()
rego := rego.New(
rego.Store(s.store),
rego.Compiler(compiler),
rego.Query(query),
rego.ParsedInput(input),
rego.Metrics(m),
rego.Instrument(instrument),
rego.Tracer(buf),
)
output, err := rego.Eval(ctx)
if err != nil {
diagLogger.Log(ctx, "", r.RemoteAddr, query, input, nil, err, m, buf)
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
diagLogger.Log(ctx, "", r.RemoteAddr, query, input, &x, nil, m, buf)
return results, nil
}
func (s *Server) indexGet(w http.ResponseWriter, r *http.Request) {
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
}
results, err := s.execQuery(ctx, r, qStr, input, 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 func(http.ResponseWriter, *http.Request)) {
prefix := fmt.Sprintf("/v%d", version)
router.HandleFunc(prefix+path, h).Methods(method)
}
func (s *Server) reload(ctx context.Context, txn storage.Transaction, event storage.TriggerEvent) {
value, err := s.store.Read(ctx, txn, storage.MustParsePath("/system/bundle/manifest/revision"))
if err == nil {
revision, ok := value.(string)
if !ok {
panic("bad revision value")
}
s.revision = revision
} else if err != nil {
if !storage.IsNotFound(err) {
panic(err)
}
}
s.partials = map[string]rego.PartialResult{}
}
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, systemMainPath)
}
func (s *Server) v0DataPost(w http.ResponseWriter, r *http.Request) {
path := stringPathToDataRef(mux.Vars(r)["path"])
s.v0QueryPath(w, r, path)
}
func (s *Server) v0QueryPath(w http.ResponseWriter, r *http.Request, path ast.Ref) {
ctx := r.Context()
m := metrics.New()
diagLogger := s.evalDiagnosticPolicy(r)
input, err := readInputV0(r.Body)
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 {
if goInput, err = ast.JSON(input); err != nil {
writer.ErrorString(w, http.StatusInternalServerError, types.CodeInvalidParameter, errors.Wrapf(err, "could not marshal input"))
return
}
}
// Prepare for query.
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 diagLogger.Explain() {
buf = topdown.NewBufferTracer()
}
rego := rego.New(
rego.Compiler(s.getCompiler()),
rego.Store(s.store),
rego.Transaction(txn),
rego.Input(goInput),
rego.Query(path.String()),
rego.Metrics(m),
rego.Instrument(diagLogger.Instrument()),
rego.Tracer(buf),
)
rs, err := rego.Eval(ctx)
// Handle results.
if err != nil {
diagLogger.Log(ctx, "", r.RemoteAddr, path.String(), goInput, nil, err, m, buf)
writer.ErrorAuto(w, err)
return
}
if len(rs) == 0 {
writer.Error(w, 404, types.NewErrorV1(types.CodeUndefinedDocument, fmt.Sprintf("%v: %v", types.MsgUndefinedError, path)))
return
}
diagLogger.Log(ctx, "", r.RemoteAddr, path.String(), goInput, &rs[0].Expressions[0].Value, nil, m, buf)
writer.JSON(w, 200, rs[0].Expressions[0].Value, false)
}
func (s *Server) v1DiagnosticsGet(w http.ResponseWriter, r *http.Request) {
pretty := getBoolParam(r.URL, types.ParamPrettyV1, true)
if s.diagnostics == nil {
writer.ErrorAuto(w, fmt.Errorf(types.MsgDiagnosticsDisabled))
return
}
explainMode := getExplain(r.URL.Query()[types.ParamExplainV1], types.ExplainFullV1)
resp := types.DiagnosticsResponseV1{
Result: []types.DiagnosticsResponseElementV1{},
}
s.diagnostics.Iter(func(i *Info) {
item := types.DiagnosticsResponseElementV1{
Revision: i.Revision,
DecisionID: i.DecisionID,
RemoteAddr: i.RemoteAddr,
Timestamp: i.Timestamp.UTC().Format(time.RFC3339Nano),
Query: i.Query,
Input: i.Input,
Metrics: i.Metrics.All(),
}
if i.Trace != nil {
item.Explanation = s.getExplainResponse(explainMode, i.Trace, pretty)
}
if i.Error != nil {
item.Error = types.NewErrorV1(types.CodeInternal, i.Error.Error())
} else {
item.Result = i.Results
}
resp.Result = append(resp.Result, item)
})
writer.JSON(w, 200, resp, pretty)
}
func (s *Server) v1DataGet(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
vars := mux.Vars(r)
path := stringPathToDataRef(vars["path"])
diagLogger := s.evalDiagnosticPolicy(r)
watch := getWatch(r.URL.Query()[types.ParamWatchV1])
if watch {
s.watchQuery(path.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)
m := metrics.New()
m.Timer(metrics.RegoQueryParse).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
}
}
m.Timer(metrics.RegoQueryParse).Stop()
var goInput interface{}
if input != nil {
var err error
if goInput, err = ast.JSON(input); err != nil {
writer.ErrorString(w, http.StatusInternalServerError, types.CodeInvalidParameter, errors.Wrapf(err, "could not marshal input"))
return
}
}
// Prepare for query.
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 || diagLogger.Explain() {
buf = topdown.NewBufferTracer()
}
var instrument bool
if includeInstrumentation || diagLogger.Instrument() {
instrument = true
}
rego := rego.New(
rego.Compiler(s.getCompiler()),
rego.Store(s.store),
rego.Transaction(txn),
rego.Input(goInput),
rego.Query(path.String()),
rego.Metrics(m),
rego.Tracer(buf),
rego.Instrument(instrument),
)
rs, err := rego.Eval(ctx)
// Handle results.
if err != nil {
diagLogger.Log(ctx, "", r.RemoteAddr, path.String(), goInput, nil, err, m, buf)
writer.ErrorAuto(w, err)
return
}
decisionID := s.generateDecisionID()
result := types.DataResponseV1{
DecisionID: decisionID,
}
if includeMetrics || includeInstrumentation {
result.Metrics = m.All()
}
if len(rs) == 0 {
if explainMode == types.ExplainFullV1 {
result.Explanation, err = types.NewTraceV1(*buf, pretty)
if err != nil {
writer.ErrorAuto(w, err)
}
}
diagLogger.Log(ctx, decisionID, r.RemoteAddr, path.String(), goInput, nil, nil, m, buf)
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)
}
diagLogger.Log(ctx, decisionID, r.RemoteAddr, path.String(), goInput, result.Result, nil, m, buf)
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.store.Write(ctx, txn, patch.op, patch.path, patch.value); 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) v1DataPost(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
vars := mux.Vars(r)
path := stringPathToDataRef(vars["path"])
diagLogger := s.evalDiagnosticPolicy(r)
watch := getWatch(r.URL.Query()[types.ParamWatchV1])
if watch {
s.watchQuery(path.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)
m := metrics.New()
m.Timer(metrics.RegoQueryParse).Start()
input, err := readInputPostV1(r.Body)
if err != nil {
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
return
}
var goInput interface{}
if input != nil {
if goInput, err = ast.JSON(input); err != nil {
writer.ErrorString(w, http.StatusInternalServerError, types.CodeInvalidParameter, errors.Wrapf(err, "could not marshal input"))
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)
opts := []func(*rego.Rego){
rego.Compiler(s.getCompiler()),
rego.Store(s.store),
}
var buf *topdown.BufferTracer
if explainMode != types.ExplainOffV1 || diagLogger.Explain() {
buf = topdown.NewBufferTracer()
}
var instrument bool
if includeInstrumentation || diagLogger.Instrument() {
instrument = true
}
rego, err := s.makeRego(ctx, partial, txn, goInput, path.String(), m, instrument, buf, opts)
if err != nil {
diagLogger.Log(ctx, "", r.RemoteAddr, path.String(), goInput, nil, err, m, nil)
writer.ErrorAuto(w, err)
return
}
rs, err := rego.Eval(ctx)
// Handle results.
if err != nil {
diagLogger.Log(ctx, "", r.RemoteAddr, path.String(), goInput, nil, err, m, buf)
writer.ErrorAuto(w, err)
return
}
decisionID := s.generateDecisionID()
result := types.DataResponseV1{
DecisionID: decisionID,
}
if includeMetrics || includeInstrumentation {
result.Metrics = m.All()
}
if len(rs) == 0 {
if explainMode == types.ExplainFullV1 {
result.Explanation, err = types.NewTraceV1(*buf, pretty)
if err != nil {
writer.ErrorAuto(w, err)
}
}
diagLogger.Log(ctx, decisionID, r.RemoteAddr, path.String(), goInput, nil, nil, m, buf)
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)
}
diagLogger.Log(ctx, decisionID, r.RemoteAddr, path.String(), goInput, result.Result, nil, m, buf)
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
}
_, 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 := 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
}
_, 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
}
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()
for id, mod := range c.Modules {
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: mod,
}
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()
m.Timer(metrics.RegoModuleParse).Start()
parsedMod, err := ast.ParseModule(path, string(buf))
m.Timer(metrics.RegoModuleParse).Stop()
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.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
}
return
}
if parsedMod == nil {
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, "empty module"))
return
}
txn, err := s.store.NewTransaction(ctx, storage.WriteParams)
if err != nil {
writer.ErrorAuto(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)
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) {
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]
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)
results, err := s.execQuery(ctx, r, qStr, nil, 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)
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) evalDiagnosticPolicy(r *http.Request) (logger diagnosticsLogger) {
// XXX(tsandall): set the decision logger on the diagnostic logger. The
// diagnostic logger is called in all the necessary locations. The diagnostic
// logger will make sure to call the decision logger regardless of whether a
// diagnostic policy is configured. In the future, we can refactor this.
defer func() {
logger.revision = s.revision
logger.logger = s.logger
}()
if s.diagnostics == nil {
return diagnosticsLogger{}
}
input, err := makeDiagnosticsInput(r)
if err != nil {
return diagnosticsLogger{}
}
compiler := s.getCompiler()
rego := rego.New(
rego.Store(s.store),
rego.Compiler(compiler),
rego.Query(`data.system.diagnostics.config`),
rego.Input(input),
)
output, err := rego.Eval(r.Context())
if err != nil {
return diagnosticsLogger{}
}
if len(output) == 1 {
if config, ok := output[0].Expressions[0].Value.(map[string]interface{}); ok {
switch config["mode"] {
case "on":
return diagnosticsLogger{
buffer: s.diagnostics,
}
case "all":
return diagnosticsLogger{
buffer: s.diagnostics,
instrument: true,
explain: true,
}
}
}
}
return diagnosticsLogger{}
}
func (s *Server) getExplainResponse(explainMode types.ExplainModeV1, trace []*topdown.Event, pretty bool) (explanation types.TraceV1) {
switch explainMode {
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 interface{}, path string, m metrics.Metrics, instrument bool, tracer topdown.Tracer, opts []func(*rego.Rego)) (*rego.Rego, error) {
if partial {
s.mtx.Lock()
defer s.mtx.Unlock()
pr, ok := s.partials[path]
if !ok {
opts = append(opts, rego.Transaction(txn), rego.Query(path), rego.Metrics(m), rego.Instrument(instrument))
r := rego.New(opts...)
var err error
pr, err = r.PartialResult(ctx)
if err != nil {
return nil, err
}
s.partials[path] = pr
}
opts := []func(*rego.Rego){
rego.Input(input),
rego.Transaction(txn),
rego.Metrics(m),
rego.Instrument(instrument),
rego.Tracer(tracer),
}
return pr.Rego(opts...), nil
}
opts = append(opts, rego.Transaction(txn), rego.Query(path), rego.Input(input), rego.Metrics(m), rego.Tracer(tracer), rego.Instrument(instrument))
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 = storage.ParsePathEscaped(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 handleCompileError(w http.ResponseWriter, err error) {
switch err := err.(type) {
case ast.Errors:
writer.Error(w, http.StatusBadRequest, types.NewErrorV1(types.CodeInvalidParameter, types.MsgCompileQueryError).WithASTErrors(err))
default:
writer.ErrorString(w, http.StatusBadRequest, types.CodeInvalidParameter, err)
}
}
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 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 getBooleanVar(bindings rego.Vars, name string) (bool, error) {
if v, ok := bindings[name]; ok {
t, ok := v.(bool)
if !ok {
return false, fmt.Errorf("non-boolean '%s' field: %v (%T)", name, v, v)
}
return t, nil
}
return false, nil
}
func getStringVar(bindings rego.Vars, name string) (string, error) {
if v, ok := bindings[name]; ok {
t, ok := v.(string)
if !ok {
return "", fmt.Errorf("non-string '%s' field: %v (%T)", name, v, v)
}
return t, nil
}
return "", nil
}
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.ExplainFullV1):
return types.ExplainFullV1
}
}
return zero
}
func makeDiagnosticsInput(r *http.Request) (map[string]interface{}, error) {
var body interface{}
if r.Body != nil {
buf, err := ioutil.ReadAll(r.Body)
if err != nil {
return nil, err
}
r.Body = ioutil.NopCloser(bytes.NewReader(buf))
decoder := util.NewJSONDecoder(bytes.NewReader(buf))
if err := decoder.Decode(&body); err != nil {
body = nil
}
}
input := map[string]interface{}{
"method": r.Method,
"path": r.URL.Path,
"body": body,
}
params := map[string]interface{}{}
for param, value := range r.URL.Query() {
var ifaces []interface{}
for _, v := range value {
ifaces = append(ifaces, v)
}
params[param] = ifaces
}
input["params"] = params
header := map[string]interface{}{}
for key, value := range r.Header {
var ifaces []interface{}
for _, v := range value {
ifaces = append(ifaces, v)
}
header[key] = ifaces
}
input["header"] = header
return input, nil
}
func readInputV0(r io.ReadCloser) (ast.Value, error) {
bs, err := ioutil.ReadAll(r)
if err != nil {
return nil, err
}
bs = bytes.TrimSpace(bs)
if len(bs) == 0 {
return nil, nil
}
var x interface{}
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 io.ReadCloser) (ast.Value, error) {
bs, err := ioutil.ReadAll(r)
if err != nil {
return nil, err
}
if len(bs) > 0 {
var request types.DataRequestV1
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
}
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>`, query, 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, err)
} else if err2 != nil {
fmt.Fprintf(w, "JSON marshal error: <pre>%v</pre>", err2)
} else {
fmt.Fprintf(w, "Query results (took %v):<br>", d)
fmt.Fprintf(w, "<pre>%s</pre>", 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 diagnosticsLogger struct {
logger func(context.Context, *Info)
revision string
explain bool
instrument bool
buffer Buffer
}
func (l diagnosticsLogger) Explain() bool {
return l.explain
}
func (l diagnosticsLogger) Instrument() bool {
return l.instrument
}
func (l diagnosticsLogger) Log(ctx context.Context, decisionID, remoteAddr, query string, input interface{}, results *interface{}, err error, m metrics.Metrics, tracer *topdown.BufferTracer) {
info := &Info{
Revision: l.revision,
Timestamp: time.Now().UTC(),
DecisionID: decisionID,
RemoteAddr: remoteAddr,
Query: query,
Input: input,
Results: results,
Error: err,
Metrics: m,
}
if tracer != nil {
info.Trace = *tracer
}
if l.logger != nil {
l.logger(ctx, info)
}
if l.buffer == nil {
return
}
l.buffer.Push(info)
}
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)
}