Files
releases/runtime/runtime.go
T
Torin Sandall 39cc4ef87f Add eval subcommand to run queries
With opa eval, the --eval flag on opa run is redundant and can be
removed.
2018-03-12 18:14:32 -07:00

394 lines
9.9 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 runtime
import (
"bytes"
"context"
"crypto/tls"
"fmt"
"io"
"os"
"time"
fsnotify "gopkg.in/fsnotify.v1"
"github.com/open-policy-agent/opa/ast"
"github.com/open-policy-agent/opa/loader"
"github.com/open-policy-agent/opa/repl"
"github.com/open-policy-agent/opa/server"
"github.com/open-policy-agent/opa/storage"
"github.com/open-policy-agent/opa/storage/inmem"
"github.com/open-policy-agent/opa/version"
"github.com/pkg/errors"
"github.com/sirupsen/logrus"
)
// Params stores the configuration for an OPA instance.
type Params struct {
// Addr is the listening address that the OPA server will bind to.
Addr string
// InsecureAddr is the listening address that the OPA server will bind to
// in addition to Addr if TLS is enabled.
InsecureAddr string
// Authentication is the type of authentication scheme to use.
Authentication server.AuthenticationScheme
// Authorization is the type of authorization scheme to use.
Authorization server.AuthorizationScheme
// Certificate is the certificate to use in server-mode. If the certificate
// is nil, the server will NOT use TLS.
Certificate *tls.Certificate
// HistoryPath is the filename to store the interactive shell user
// input history.
HistoryPath string
// Output format controls how the REPL will print query results.
// Default: "pretty".
OutputFormat string
// Paths contains filenames of base documents and policy modules to load on
// startup. Data files may be prefixed with "<dotted-path>:" to indicate
// where the contained document should be loaded.
Paths []string
// Watch flag controls whether OPA will watch the Paths files for changes.
// If this flag is true, OPA will watch the Paths files for changes and
// reload the storage layer each time they change. This is useful for
// interactive development.
Watch bool
// ErrorLimit is the number of errors the compiler will allow to occur before
// exiting early.
ErrorLimit int
// DecisionIDFactory generates decision IDs to include in API responses
// sent by the server (in response to Data API queries.)
DecisionIDFactory func() string
// DiagnosticsBuffer is used by the server to record policy decisions.
DiagnosticsBuffer server.Buffer
// Logging configures the logging behaviour.
Logging LoggingConfig
// Output is the output stream used when run as an interactive shell. This
// is mostly for test purposes.
Output io.Writer
}
// LoggingConfig stores the configuration for OPA's logging behaviour.
type LoggingConfig struct {
Level string
Format string
}
// NewParams returns a new Params object.
func NewParams() Params {
return Params{
Output: os.Stdout,
}
}
// Runtime represents a single OPA instance.
type Runtime struct {
Params Params
Store storage.Store
}
// NewRuntime returns a new Runtime object initialized with params.
func NewRuntime(ctx context.Context, params Params) (*Runtime, error) {
loaded, err := loader.All(params.Paths)
if err != nil {
return nil, err
}
store := inmem.New()
txn, err := store.NewTransaction(ctx, storage.WriteParams)
if err != nil {
return nil, err
}
if err := store.Write(ctx, txn, storage.AddOp, storage.Path{}, loaded.Documents); err != nil {
store.Abort(ctx, txn)
return nil, errors.Wrapf(err, "storage error")
}
if err := compileAndStoreInputs(ctx, store, txn, loaded.Modules, params.ErrorLimit); err != nil {
store.Abort(ctx, txn)
return nil, errors.Wrapf(err, "compile error")
}
if err := store.Commit(ctx, txn); err != nil {
return nil, errors.Wrapf(err, "storage error")
}
rt := &Runtime{
Store: store,
Params: params,
}
return rt, nil
}
// StartServer starts the runtime in server mode. This function will block the calling goroutine.
func (rt *Runtime) StartServer(ctx context.Context) {
setupLogging(rt.Params.Logging)
logrus.WithFields(logrus.Fields{
"addr": rt.Params.Addr,
"insecure_addr": rt.Params.InsecureAddr,
}).Infof("First line of log stream.")
s, err := server.New().
WithStore(rt.Store).
WithCompilerErrorLimit(rt.Params.ErrorLimit).
WithAddress(rt.Params.Addr).
WithInsecureAddress(rt.Params.InsecureAddr).
WithCertificate(rt.Params.Certificate).
WithAuthentication(rt.Params.Authentication).
WithAuthorization(rt.Params.Authorization).
WithDiagnosticsBuffer(rt.Params.DiagnosticsBuffer).
WithDecisionIDFactory(rt.Params.DecisionIDFactory).
Init(ctx)
if err != nil {
logrus.WithField("err", err).Fatalf("Unable to initialize server.")
}
if rt.Params.Watch {
if err := rt.startWatcher(ctx, rt.Params.Paths, onReloadLogger); err != nil {
fmt.Fprintln(rt.Params.Output, "error opening watch:", err)
os.Exit(1)
}
}
s.Handler = NewLoggingHandler(s.Handler)
loop1, loop2 := s.Listeners()
if loop2 != nil {
go func() {
if err := loop2(); err != nil {
logrus.WithField("err", err).Fatalf("Server exiting.")
}
}()
}
if err := loop1(); err != nil {
logrus.WithField("err", err).Fatalf("Server exiting.")
}
}
// StartREPL starts the runtime in REPL mode. This function will block the calling goroutine.
func (rt *Runtime) StartREPL(ctx context.Context) {
banner := rt.getBanner()
repl := repl.New(rt.Store, rt.Params.HistoryPath, rt.Params.Output, rt.Params.OutputFormat, rt.Params.ErrorLimit, banner)
if rt.Params.Watch {
if err := rt.startWatcher(ctx, rt.Params.Paths, onReloadPrinter(rt.Params.Output)); err != nil {
fmt.Fprintln(rt.Params.Output, "error opening watch:", err)
os.Exit(1)
}
}
repl.Loop(ctx)
}
func (rt *Runtime) startWatcher(ctx context.Context, paths []string, onReload func(time.Duration, error)) error {
watcher, err := getWatcher(paths)
if err != nil {
return err
}
go rt.readWatcher(ctx, watcher, paths, onReload)
return nil
}
func (rt *Runtime) readWatcher(ctx context.Context, watcher *fsnotify.Watcher, paths []string, onReload func(time.Duration, error)) {
for {
select {
case evt := <-watcher.Events:
removalMask := (fsnotify.Remove | fsnotify.Rename)
mask := (fsnotify.Create | fsnotify.Write | removalMask)
if (evt.Op & mask) != 0 {
t0 := time.Now()
removed := ""
if (evt.Op & removalMask) != 0 {
removed = evt.Name
}
err := rt.processWatcherUpdate(ctx, paths, removed)
onReload(time.Since(t0), err)
}
}
}
}
func (rt *Runtime) processWatcherUpdate(ctx context.Context, paths []string, removed string) error {
loaded, err := loader.All(paths)
if err != nil {
return err
}
removed = loader.CleanPath(removed)
return storage.Txn(ctx, rt.Store, storage.WriteParams, func(txn storage.Transaction) error {
if err := rt.Store.Write(ctx, txn, storage.AddOp, storage.Path{}, loaded.Documents); err != nil {
return err
}
ids, err := rt.Store.ListPolicies(ctx, txn)
if err != nil {
return err
}
for _, id := range ids {
if id == removed {
if err := rt.Store.DeletePolicy(ctx, txn, id); err != nil {
return err
}
} else if _, exists := loaded.Modules[id]; !exists {
// This branch get hit in two cases.
// 1. Another piece of code has access to the store and inserts
// a policy out-of-band.
// 2. In between FS notification and loader.All() call above, a
// policy is removed from disk.
bs, err := rt.Store.GetPolicy(ctx, txn, id)
if err != nil {
return err
}
module, err := ast.ParseModule(id, string(bs))
if err != nil {
return err
}
if _, ok := loaded.Modules[id]; !ok {
loaded.Modules[id] = &loader.RegoFile{
Name: id,
Raw: bs,
Parsed: module,
}
}
}
}
return compileAndStoreInputs(ctx, rt.Store, txn, loaded.Modules, -1)
})
}
func (rt *Runtime) getBanner() string {
var buf bytes.Buffer
fmt.Fprintf(&buf, "OPA %v (commit %v, built at %v)\n", version.Version, version.Vcs, version.Timestamp)
fmt.Fprintf(&buf, "\n")
fmt.Fprintf(&buf, "Run 'help' to see a list of commands.\n")
return buf.String()
}
func compileAndStoreInputs(ctx context.Context, store storage.Store, txn storage.Transaction, modules map[string]*loader.RegoFile, errorLimit int) error {
policies := make(map[string]*ast.Module, len(modules))
for id, parsed := range modules {
policies[id] = parsed.Parsed
}
c := ast.NewCompiler().SetErrorLimit(errorLimit)
if c.Compile(policies); c.Failed() {
return c.Errors
}
for id, parsed := range modules {
if err := store.UpsertPolicy(ctx, txn, id, parsed.Raw); err != nil {
return err
}
}
return nil
}
func getWatcher(rootPaths []string) (*fsnotify.Watcher, error) {
watchPaths, err := getWatchPaths(rootPaths)
if err != nil {
return nil, err
}
watcher, err := fsnotify.NewWatcher()
if err != nil {
return nil, err
}
for _, path := range watchPaths {
if err := watcher.Add(path); err != nil {
return nil, err
}
}
return watcher, nil
}
func getWatchPaths(rootPaths []string) ([]string, error) {
paths := []string{}
for _, path := range rootPaths {
_, path = loader.SplitPrefix(path)
result, err := loader.Paths(path, true)
if err != nil {
return nil, err
}
paths = append(paths, result...)
}
return paths, nil
}
func onReloadLogger(d time.Duration, err error) {
logrus.WithFields(logrus.Fields{
"duration": d,
"err": err,
}).Warn("Processed file watch event.")
}
func onReloadPrinter(output io.Writer) func(time.Duration, error) {
return func(d time.Duration, err error) {
if err != nil {
fmt.Fprintf(output, "\n# reload error (took %v): %v", d, err)
} else {
fmt.Fprintf(output, "\n# reloaded files (took %v)", d)
}
}
}
func setupLogging(config LoggingConfig) {
switch config.Format {
case "json":
logrus.SetFormatter(&logrus.JSONFormatter{})
default:
logrus.SetFormatter(&logrus.TextFormatter{
FullTimestamp: true,
})
}
lvl := logrus.InfoLevel
if config.Level != "" {
var err error
lvl, err = logrus.ParseLevel(config.Level)
if err != nil {
logrus.Fatalf("Unable to parse log level: %v", err)
}
}
logrus.SetLevel(lvl)
}