featurebase/http_handler.go
pokeeffe-molecula 204558b46f added /sql endpoint; implemented SHOW TABLES (#1935)
* squashed 45 commits into one :)

* tlt/sql experiment (#2035)

* Move PlanOperator to sql3/planner/types package

includes:
type PlanOperatorColumn struct
type PlanOperator interface

* Remove planner dependencies from pilosa package

The goal after this is to prevent the planner package (which doesn't exist yet)
from being imported by the pilosa package; we just want it injected into the server
in server/server.go. This is because the planner package uses pilosa types, so we need
to avoid circular dependencies.

Added ExecutionPlannerFn
Make public: pilosa.ExecOptions
Added a pilosa.Executor interface
Added a planner.types.CompilePlanner interface
Isolated the planner calls to:
- Executor.Execute()
- *API.[method]()

* Move executionplanner files into the sql3/planner package.

This required a bit of gymnastics, and there are some things around
FieldOptions which need to be addressed soon.

* Remove the hacky FieldOptions stuff I added earlier

This implementation just uses the pilosa.FieldOption functional options
provided by the API (as opposed to trying to build a FieldOptions
object.

It also changes field types to constants. These are private for now, but
if we need to make them public, we should put them in the planner/types
package.

* Implement the "scale" value from Decimal(scale)

Also, precision and scale were currently reversed in the parser. This
fixes that.

* Modify the parser to handle CACHETYPE <type> SIZE <size>

It's a little odd to me that the cache type values are Tokens, but I
guess it's ok. One thing to keep in mind is that FeatureBase expects
lowercase values, so this commit changes the parser to set the value to
the lowercase version of the type.

* Fix the /sql2 tests

This entailed a combination of commenting out or t.Skip()-ing tests
which covered code in the parser that has been commented out or removed
as not currently supported in sql3.

It also adds some coverage for the sql.Contraint stringers.

* Prevent JSON sql results from containing closing commas

This commit just re-works the existing output code to avoid inserting
closing commas (which results in invalid JSON).

* Enhance the CREATE TABLE test coverage.

In particular, ensure that the fields which get created in FeatureBase
are what we expect based on the fields defined in the CREATE TABLE
statement.

This also ensures that the TIMEQUANTUM and CACHETYPE contraints are not
provided for the same field (since those constraints are not supported
together).

* Adjust the EBNF file to indicate SIZE contraint is optional

A CACHETYPE can be provided without a SIZE. This change indicates that
SIZE is optional.

* Remove `executionplanner_` from file names (#2040)

* implementation of ALTER TABLE (sans column RENAME)

* refactored expression analysis; added more robust type checking; all unary and bin ops function on ints

* added type support for expressions; full bin/unary op support; added cast; more literal support

* cast int to all other types

* all literals (except idset, stringset & timestamp) make it thru; cast to all types with int as source now works

* implemented LIKE/NOT LIKE

* Implemented IS [NOT] NULL

* Move sql2 files into sql3/parser package (#2045)

* Move sql2 files into sql3/parser package

This also removes the sql2 package.

* Fix tests which were typing _id fields as INT intead of ID

* implemented BETWEEN, NOT BETWEEN

* Add featurebase/error package (#2046)

* Add featurebase/error package

I copied the `dax/errors` package which I am starting to use in the DAX
prototype into `featurebase/errors` in order to start using it with the
sql3 package. It's basically a wrapper around `github.com/pkg/errors`,
but it uses a customer coded error.

The sql package can define its own errors based on the
`featurebase/errors` types. Then do things like `Wrap()` and `Is()`.

* Address the linter complaints: shadowed variables, unreachable code

* implemented IN & NOT IN with expression lists

* first cut of CASE

* Fixed some errors from rebase

* updated bnf; removed unused code; tightened up error handling

* first crack at basic CLI for SQL3

Use: `featurebase cli`

Still lots to do here, but for example:

> select count(*) from tremor
+--------------+
|        COUNT |
+--------------+
| 1.158321e+06 |
+--------------+

* Iterate on the CLI (#2057)

Handle the errors.
Add an "exit" command.
Add some general formatting and white space.

Add termination character: ";" (semicolon)

This commit allows a user to provide multiple or partial SQL statements.

Example of multiple statements:
```
show tables; select * from foo;
```

Example of partial (multi-line) statements:
```
select *
from foo;
```

Don't uppercase the header values

* error refactoring; first cut of TOP; remove unused code; use log.Printf instead of fmt.Printf

* fixed a bug with QualifiedRef from refactoring; added bones of INSERT; removal of unused code; tightened up errors more; fixed failing tests

* single value list for INSERT

* Update bnf per discussion with Travis; INSERT now doing the requisite stuff

* Pat's eyes went square - nothing wrong with TOP, Pat needed to learn arrays again.

* improved some errors; fixed tests to suit

* send warnings back in the api; update CLI to display warnings

* start warning on stuff not implemented so we don't get bugged about it

* Tlt/sql experiment (#2063)

* Expresssion -> Expression

* Add SQL planner test

- adds a test to which it is easier to add tables and SQL statments
- un-exports all of the expression types
- removes the planner pointer from the expression types (it can be added
  back later if need be)

* Fix where clause on a string field

Prior to this commit, the binary expression for a where clause on a
string field was building the call by providing a range operator which
is typically used for BSI fields. This changes it to use the call.Args
for string values.

* Update planner tests to handle multiple sql for the same results

* Reorganize SQL tests

Introduce a test/helpers package and move shared MustQueryRows into that
package.

* Add a compatibility map for field types. (#2064)

This is primarily to address the fact that ID fields were previously
incompatible with INT literals.

We should probably consider introducing a custom type for FieldType
which can be used to define compatibilities.

* significantly refactored type checking

* Handle nil (NULL) values in the sql CLI. (#2067)

go-pretty panics if the interface{} field value is nil. This replaces
nil values with a "NULL" string.

* Squash some commits

fixed a still failing test

added line, col to all error messages

refactored source handling to enable table aliases

fixed some copypasta per review

warnings for order by & topn; implemented select as a source

starting to handle in (select...); added stub for optimizer

JSON-encode the sql error and warning strings (#2069)

Error strings with unencoded characters (like double quotes) were
resulting in invalid json.

got insert working; added symbol table; added concrete optimizer; added nascent NestedLoopsOperator; rewrite "where foo in (select..." as inner join

* all about the sets (#2085)

* implemented setcontains()

* implemented set literal; insert set column values; setcontains/all/any both in expr eval and pql filters

* Convert test to use latest framework. (#2086)

* fixed some comments

* removed refactored tests

Co-authored-by: Travis Turner <travis@pilosa.com>

* Add support for Decimal fields to the sql test. (#2090)

* dates (#2094)

* return dates as strings in output; tightened up decimal type checking

* return dates as strings in output; tightened up decimal type checking

* fixed failing tests after decimal changes

* can now insert decimal values

* implemented insert for timestamp data type; implemented current_date, current_timestamp constants

* fixed some failing tests

* handle date literals from strings in insert statements

* changes from feedback

* Fix pointer method error

* sql3 API interface (#2110)

* Introduce API-related interfaces: SchemaAPI, ComputeAPI

The sql3 code was relying on the pointer: *pilosa.API in order to call
API methods directly on the local node. If we want to import and use the
sql3 package in another service (the DAX queryer, for example), we need
to be able to use an implementation of an interface for those API method
calls.

This commit introduces two interfaces, both automatically implemented by
pilosa.API:
- SchemaAPI
- ComputeAPI

* Convert sql3 code to use IndexInfo instead of Index

The sql3 code was relying on a *pilosa.Index and its methods to get
general information like index and field name, type, etc. This commit
converts everything to use a *pilosa.IndexInfo instead.

This allows us to modify the SchemaAPI interface to also return
IndexInfo instead of Index, which will be a lot easier to implement in a
non-pilosa package (like DAX); creating a *pilosa.Index requires
providing things like data directory paths and holders, which are not
necessary for these use cases.

* Unary and Binary Ops R US plus CAST (#2111)

* implemented string literal for timestamp epoch

* fixed failing test

* fixed the failing test again

* refactored tests; implemented unary op tests for all datatypes; implemented binop tests for int/int, int/id, int/decimal & ID/int

* implemented all binary ops for INT & all other types, ID & all other types

* implemented binary ops for DECIMAL types & all other types

* added STRING & BOOL to various tests; implemented all remaining binOp tests

* fix up some stuff after rebasing

* refactored test defs into multiple files; implemented CAST for every datatype

* added tests for like/not like

* addressed review feedback

* addressed type review feedback

* tightened up IS [NOT] NULL behavior plus tests (#2118)

* tightened up IS [NOT] NULL behavior plus tests

* BETWEEN/NOT BETWEEN with all data types

* addressed review feedback

* Handle negative integers in column min/max constraints (#2120)

This commit parses the min/max contraint as an expression, as opposed to
an int literal, so that negative values are treated as Unary
expressions.

There currently isn't support for min/max constraints on `decimal`
fiels, so for now this change only expects +/- integer values.

* Implement the CREATE TABLE keypartitions logic (#2123)

* Execution time, IN/NOT IN & multiple aggregates (#2124)

* added display of execution time

* IN/NOT IN tests for all data types

* fixed date parsing

* removed duplicative tests

* refactoring aggregates

* suport multiple aggregates

* Address review feedback

* final round of feedback

* Add method SchemaAPI.CreateIndexAndFields() (#2127)

In order to support a CREATE TABLE statement as a single command, this
commit alters the SchemaAPI interface to contain a single method which
handles both the index and its fields. It also updates the sql3 code to
use this interface instead of CreateIndex() and CreateField()
indepedently.

* Symbol Handling (Again) (#2129)

* Refactored symbol handling in the planner; re-instated the select as source tests

* removed commented out code

* addressing review feedback

* Move hard-coded _id field out of planner and into interface implementation (#2130)

This commit moves the hard-coded addition of the `_id` field from the
planner to the SchemaAPI.IndexInfo() implementation method.

NOTE: If anything was expecting SchemaAPI.Schema() to also return the
`_id` field as part of its field list in each table, then it would not
be there because the `_id` field is only added in the IndexInfo() method
for now. Currently that's not a problem because nothing is expecting the
`_id` field for `Schema()`.

* Multiple aggregates, all aggregates stand alone and in GROUP BY (#2132)

* handle multiple aggregates in group by queries

* added handling for avg() aggregate both stand alone and in group by

* tightened up sum & avg outside of group by

* added min, max & percentile

* added warnings

* Make MaterializedRowSet implement the PlanOperator interface. (#2133)

This commit refactors the PQLMultiGroupByOperator to have a PlanOperator
as its output. Then, when it initializes, it sets up a
MaterializedRowSet and populates that with the values from the multiple
group by operations.

* added explicit min/max pql operators

* saved a file I forgot to save

* per review

* Un-indent some if/else nesting (#2136)

Co-authored-by: Travis Turner <travis@pilosa.com>

* Add optional `name` argument to test structs.

This commit adds the `name` argument to `tableTest` and `sqlTest` so
that a test can be optionally named. This allows a developer to more
easily run/identify a particular test by name.

* Inbuilt functions (redux) (#2141)

* set functions type parameter type checking

* implemented datepart

* include SQL3 type in SHOW COLUMNS output

* fixed select as source; failing SHOW COLUMNS test

* select in select list

* dump output columns; handle optimization for select list subqueries

* make it an error to return multiple rows for a select list subquery

* added description

* contants and test coverage for datepart function

* SQL3 Refactor-palooza (#2182)

* removed unneeded IsAggregate()

* first cut of working nested loops operator aka INNER JOIN

* remove selectListItemPlanExpression

* added some warnings

* all the tests are passing again!

* addressed some linter complaints

* added basic order by

* bug fixes; added 'or replace'/'replace' to insert

* for insert references should return appropriately

* added back ability to use subquery singleton expressions

* removed dead code; fixed test

* json-able plan, Schema() plus refactoring

* fixed dumb code

* add some tests for time quantum behavior

* Code cleanup during review. Also fixed INSERT to keyed table bug.

This commit contains a lot of minor adjustments made during code review.

It also contains a bug fix that was preventing INSERT into a keyed table
(i.e. _id type STRING) from working.

Co-authored-by: Travis Turner <travis@molecula.com>

* Fix expected min/max on timestamp column test (decimal field)

I don't know why this changed, but presumably something to do with
decimal related work that happened on master.

* Fix compile problem after rebase

* review feedback

Co-authored-by: Matthew Jaffee <jaffee@pilosa.com>
Co-authored-by: Travis Turner <travis@pilosa.com>
Co-authored-by: Travis Turner <travis@molecula.com>
Co-authored-by: Fletcher Haynes <fletcher@capitalprawn.com>
2022-09-30 11:10:24 -07:00

4145 lines
128 KiB
Go

// Copyright 2022 Molecula Corp. (DBA FeatureBase).
// SPDX-License-Identifier: Apache-2.0
package pilosa
import (
"bytes"
"context"
"crypto/tls"
"encoding/hex"
"encoding/json"
"expvar"
"fmt"
"io"
"math"
"math/big"
"mime"
"net"
"net/http"
_ "net/http/pprof" // Imported for its side-effect of registering pprof endpoints with the server.
"net/url"
"os"
"reflect"
"runtime/debug"
"runtime/pprof"
"sort"
"strconv"
"strings"
"sync"
"time"
"github.com/featurebasedb/featurebase/v3/authn"
"github.com/featurebasedb/featurebase/v3/authz"
"github.com/featurebasedb/featurebase/v3/disco"
"github.com/featurebasedb/featurebase/v3/ingest"
"github.com/featurebasedb/featurebase/v3/logger"
"github.com/featurebasedb/featurebase/v3/monitor"
"github.com/featurebasedb/featurebase/v3/pql"
"github.com/featurebasedb/featurebase/v3/rbf"
"github.com/featurebasedb/featurebase/v3/storage"
"github.com/featurebasedb/featurebase/v3/tracing"
"github.com/felixge/fgprof"
"github.com/gorilla/handlers"
"github.com/gorilla/mux"
"github.com/molecula/featurebase/v3/authn"
"github.com/molecula/featurebase/v3/authz"
"github.com/molecula/featurebase/v3/disco"
"github.com/molecula/featurebase/v3/ingest"
"github.com/molecula/featurebase/v3/logger"
"github.com/molecula/featurebase/v3/monitor"
"github.com/molecula/featurebase/v3/pql"
"github.com/molecula/featurebase/v3/rbf"
"github.com/molecula/featurebase/v3/sql3/planner/types"
"github.com/molecula/featurebase/v3/storage"
"github.com/molecula/featurebase/v3/tracing"
"github.com/pkg/errors"
"github.com/prometheus/client_golang/prometheus/promhttp"
dto "github.com/prometheus/client_model/go"
"github.com/prometheus/prom2json"
"github.com/zeebo/blake3"
)
// Handler represents an HTTP handler.
type Handler struct {
Handler http.Handler
fileSystem FileSystem
logger logger.Logger
queryLogger logger.Logger
// Keeps the query argument validators for each handler
validators map[string]*queryValidationSpec
api *API
ln net.Listener
// url is used to hold the advertise bind address for printing a log during startup.
url string
closeTimeout time.Duration
serializer Serializer
roaringSerializer Serializer
server *http.Server
middleware []func(http.Handler) http.Handler
pprofCPUProfileBuffer *bytes.Buffer
auth *authn.Auth
permissions *authz.GroupPermissions
// sqlEnabled is serving as a feature flag for turning on/off the /sql
// endpoint.
sqlEnabled bool
}
// externalPrefixFlag denotes endpoints that are intended to be exposed to clients.
// This is used for stats tagging.
var externalPrefixFlag = map[string]bool{
"schema": true,
"query": true,
"import": true,
"export": true,
"index": true,
"field": true,
"nodes": true,
"version": true,
}
const (
// OriginalIPHeader is the original IP for client
// It is used mainly for authenticating on remote nodes
// ForwardedIPHeader gets updated to the node's IP
// when requests are forward to other nodes in the cluster
OriginalIPHeader = "X-Molecula-Original-IP"
// ForwardedIPHeader is part of the standard header
// it is used to identify the originating IP of a client
ForwardedIPHeader = "X-Forwarded-For"
// AllowedNetworksGroupName is used for the admin group authorization
// when authentication is completed through checking the client IP
// against the allowed networks
AllowedNetworksGroupName = "allowed-networks"
)
type errorResponse struct {
Error string `json:"error"`
}
// handlerOption is a functional option type for Handler
type handlerOption func(s *Handler) error
func OptHandlerMiddleware(middleware func(http.Handler) http.Handler) handlerOption {
return func(h *Handler) error {
h.middleware = append(h.middleware, middleware)
return nil
}
}
func OptHandlerAllowedOrigins(origins []string) handlerOption {
return func(h *Handler) error {
h.middleware = append(h.middleware, handlers.CORS(
handlers.AllowedOrigins(origins),
handlers.AllowedHeaders([]string{"Content-Type"}),
))
return nil
}
}
func OptHandlerAPI(api *API) handlerOption {
return func(h *Handler) error {
h.api = api
return nil
}
}
func OptHandlerAuthN(authn *authn.Auth) handlerOption {
return func(h *Handler) error {
h.auth = authn
return nil
}
}
func OptHandlerAuthZ(gp *authz.GroupPermissions) handlerOption {
return func(h *Handler) error {
h.permissions = gp
return nil
}
}
func OptHandlerFileSystem(fs FileSystem) handlerOption {
return func(h *Handler) error {
h.fileSystem = fs
return nil
}
}
func OptHandlerLogger(logger logger.Logger) handlerOption {
return func(h *Handler) error {
h.logger = logger
return nil
}
}
func OptHandlerQueryLogger(logger logger.Logger) handlerOption {
return func(h *Handler) error {
h.queryLogger = logger
return nil
}
}
func OptHandlerSerializer(s Serializer) handlerOption {
return func(h *Handler) error {
h.serializer = s
return nil
}
}
func OptHandlerRoaringSerializer(s Serializer) handlerOption {
return func(h *Handler) error {
h.roaringSerializer = s
return nil
}
}
// OptHandlerListener set the listener that will be used by the HTTP server.
// Url must be the advertised URL. It will be used to show a log to the user
// about where the Web UI is. This option is mandatory.
func OptHandlerListener(ln net.Listener, url string) handlerOption {
return func(h *Handler) error {
h.ln = ln
h.url = url
return nil
}
}
// OptHandlerCloseTimeout controls how long to wait for the http Server to
// shutdown cleanly before forcibly destroying it. Default is 30 seconds.
func OptHandlerCloseTimeout(d time.Duration) handlerOption {
return func(h *Handler) error {
h.closeTimeout = d
return nil
}
}
// OptHandlerSQLEnabled enables the /sql endpoint.
func OptHandlerSQLEnabled(v bool) handlerOption {
return func(h *Handler) error {
h.sqlEnabled = v
return nil
}
}
var makeImportOk sync.Once
var importOk []byte
// NewHandler returns a new instance of Handler with a default logger.
func NewHandler(opts ...handlerOption) (*Handler, error) {
handler := &Handler{
fileSystem: NopFileSystem,
logger: logger.NopLogger,
closeTimeout: time.Second * 30,
}
for _, opt := range opts {
err := opt(handler)
if err != nil {
return nil, errors.Wrap(err, "applying option")
}
}
if handler.serializer == nil || handler.roaringSerializer == nil {
return nil, errors.New("must use serializer options when creating handler")
}
makeImportOk.Do(func() {
var err error
importOk, err = handler.serializer.Marshal(&ImportResponse{Err: ""})
if err != nil {
panic(fmt.Sprintf("trying to cache import-OK response: %v", err))
}
})
// if OptHandlerFileSystem is used, it must be before newRouter is called
handler.Handler = newRouter(handler)
handler.populateValidators()
if handler.api == nil {
return nil, errors.New("must pass OptHandlerAPI")
}
if handler.ln == nil {
return nil, errors.New("must pass OptHandlerListener")
}
handler.server = &http.Server{Handler: handler}
return handler, nil
}
func (h *Handler) Serve() error {
err := h.server.Serve(h.ln)
if err != nil && err.Error() != "http: Server closed" {
h.logger.Errorf("HTTP handler terminated with error: %s\n", err)
return errors.Wrap(err, "serve http")
}
return nil
}
// Close tries to cleanly shutdown the HTTP server, and failing that, after a
// timeout, calls Server.Close.
func (h *Handler) Close() error {
deadlineCtx, cancelFunc := context.WithDeadline(context.Background(), time.Now().Add(h.closeTimeout))
defer cancelFunc()
err := h.server.Shutdown(deadlineCtx)
if err != nil {
err = h.server.Close()
}
return errors.Wrap(err, "shutdown/close http server")
}
func (h *Handler) populateValidators() {
h.validators = map[string]*queryValidationSpec{}
h.validators["GetExport"] = queryValidationSpecRequired("index", "field", "shard")
h.validators["GetIndexes"] = queryValidationSpecRequired()
h.validators["GetIndex"] = queryValidationSpecRequired()
h.validators["PostIndex"] = queryValidationSpecRequired()
h.validators["DeleteIndex"] = queryValidationSpecRequired()
h.validators["GetTranslateData"] = queryValidationSpecRequired("index").Optional("partition", "field")
h.validators["PostTranslateKeys"] = queryValidationSpecRequired()
h.validators["PostField"] = queryValidationSpecRequired()
h.validators["DeleteField"] = queryValidationSpecRequired()
h.validators["PostImport"] = queryValidationSpecRequired().Optional("clear", "ignoreKeyCheck")
h.validators["PostImportAtomicRecord"] = queryValidationSpecRequired().Optional("simPowerLossAfter")
h.validators["PostImportRoaring"] = queryValidationSpecRequired().Optional("remote", "clear")
h.validators["PostQuery"] = queryValidationSpecRequired().Optional("shards", "excludeColumns", "profile")
h.validators["GetInfo"] = queryValidationSpecRequired()
h.validators["RecalculateCaches"] = queryValidationSpecRequired()
h.validators["GetSchema"] = queryValidationSpecRequired().Optional("views")
h.validators["PostSchema"] = queryValidationSpecRequired().Optional("remote")
h.validators["GetStatus"] = queryValidationSpecRequired()
h.validators["GetVersion"] = queryValidationSpecRequired()
h.validators["PostClusterMessage"] = queryValidationSpecRequired()
h.validators["GetFragmentBlockData"] = queryValidationSpecRequired()
h.validators["GetFragmentBlocks"] = queryValidationSpecRequired("index", "field", "view", "shard")
h.validators["GetFragmentData"] = queryValidationSpecRequired("index", "field", "view", "shard")
h.validators["GetFragmentNodes"] = queryValidationSpecRequired("shard", "index")
h.validators["GetPartitionNodes"] = queryValidationSpecRequired("partition")
h.validators["GetNodes"] = queryValidationSpecRequired()
h.validators["GetShardMax"] = queryValidationSpecRequired()
h.validators["GetTransactionList"] = queryValidationSpecRequired()
h.validators["GetTransactions"] = queryValidationSpecRequired()
h.validators["GetTransaction"] = queryValidationSpecRequired()
h.validators["PostTransaction"] = queryValidationSpecRequired()
h.validators["PostFinishTransaction"] = queryValidationSpecRequired()
}
type contextKeyQuery int
const (
contextKeyQueryRequest contextKeyQuery = iota
contextKeyQueryError
contextKeyGroupMembership
)
// addQueryContext puts the results of handler.readQueryRequest into the Context for use by
// both other middleware and any handlers.
func (h *Handler) addQueryContext(next http.Handler) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
pathParts := strings.Split(r.URL.Path, "/")
if len(pathParts) > 3 && pathParts[3] == "query" {
req, err := h.readQueryRequest(r)
ctx := context.WithValue(r.Context(), contextKeyQueryRequest, req)
ctx = context.WithValue(ctx, contextKeyQueryError, err)
next.ServeHTTP(w, r.WithContext(ctx))
} else {
next.ServeHTTP(w, r)
}
})
}
func (h *Handler) queryArgValidator(next http.Handler) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
key := mux.CurrentRoute(r).GetName()
if validator, ok := h.validators[key]; ok {
if err := validator.validate(r.URL.Query()); err != nil {
errText := err.Error()
if validHeaderAcceptJSON(r.Header) {
response := errorResponse{Error: errText}
data, err := json.Marshal(response)
if err != nil {
h.logger.Errorf("failed to encode error %q as JSON: %v", errText, err)
} else {
errText = string(data)
}
}
http.Error(w, errText, http.StatusBadRequest)
return
}
}
next.ServeHTTP(w, r)
})
}
func (h *Handler) extractTracing(next http.Handler) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
span, ctx := tracing.GlobalTracer.ExtractHTTPHeaders(r)
defer span.Finish()
next.ServeHTTP(w, r.WithContext(ctx))
})
}
func (h *Handler) collectStats(next http.Handler) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
t := time.Now()
next.ServeHTTP(w, r)
dur := time.Since(t)
statsTags := make([]string, 0, 5)
longQueryTime := h.api.LongQueryTime()
if longQueryTime > 0 && dur > longQueryTime {
queryRequest := r.Context().Value(contextKeyQueryRequest)
var queryString string
if req, ok := queryRequest.(*QueryRequest); ok {
queryString = req.Query
}
h.logger.Printf("HTTP query duration %v exceeds %v: %s %s %s", dur, longQueryTime, r.Method, r.URL.String(), queryString)
statsTags = append(statsTags, "slow:true")
} else {
statsTags = append(statsTags, "slow:false")
}
pathParts := strings.Split(r.URL.Path, "/")
if externalPrefixFlag[pathParts[1]] {
statsTags = append(statsTags, "where:external")
} else {
statsTags = append(statsTags, "where:internal")
}
statsTags = append(statsTags, "useragent:"+r.UserAgent())
path, err := mux.CurrentRoute(r).GetPathTemplate()
if err == nil {
statsTags = append(statsTags, "path:"+path)
}
statsTags = append(statsTags, "method:"+r.Method)
stats := h.api.StatsWithTags(statsTags)
if stats != nil {
stats.Timing(MetricHTTPRequest, dur, 0.1)
}
})
}
func (h *Handler) monitorPerformance(next http.Handler) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if !monitor.IsOn() {
next.ServeHTTP(w, r)
return
}
// %% begin sonarcloud ignore %%
prefixes := make(map[string]struct{})
prefixes["index"] = struct{}{}
prefixes["info"] = struct{}{}
prefixes["schema"] = struct{}{}
prefixes["status"] = struct{}{}
prefixes["queries"] = struct{}{}
prefixes["query-history"] = struct{}{}
pathParts := strings.Split(r.URL.Path, "/")
// checks < 5 to exclude import endpoints for now from sentry transactions as
// there could potentially be many of them. Pricing is per transaction.
if len(pathParts) > 1 && len(pathParts) < 5 {
if _, ok := prefixes[pathParts[1]]; ok {
path := scrubPath(pathParts)
span := monitor.StartSpan(r.Context(), "HTTP", path)
qreq := r.Context().Value(contextKeyQueryRequest)
req, ok := qreq.(*QueryRequest)
if ok && req != nil {
span.SetTag("PQL Query", req.Query)
span.SetTag("SQL Query", req.SQLQuery)
span.SetTag("Index", mux.Vars(r)["index"])
}
next.ServeHTTP(w, r)
span.Finish()
return
}
}
next.ServeHTTP(w, r)
// %% end sonarcloud ignore %%
})
}
func scrubPath(pathParts []string) string {
l := len(pathParts)
if l > 1 && pathParts[1] == "index" {
switch {
case l > 4:
pathParts[4] = "{field}"
fallthrough
case l > 2:
pathParts[2] = "{index}"
}
}
return strings.Join(pathParts, "/")
}
// latticeRoutes lists the frontend routes that do not directly correspond to
// backend routes, and require special handling.
var latticeRoutes = []string{"/tables", "/query", "/querybuilder", "/signin"} // TODO somehow pull this from some metadata in the lattice directory
// newRouter creates a new mux http router.
func newRouter(handler *Handler) http.Handler {
router := mux.NewRouter()
// TODO: figure out how to protect these if needed
router.PathPrefix("/debug/pprof/").Handler(http.DefaultServeMux).Methods("GET")
router.PathPrefix("/debug/fgprof").Handler(fgprof.Handler()).Methods("GET")
router.Handle("/debug/vars", expvar.Handler()).Methods("GET")
router.Handle("/metrics", promhttp.Handler())
router.HandleFunc("/metrics.json", handler.chkAuthZ(handler.handleGetMetricsJSON, authz.Admin)).Methods("GET").Name("GetMetricsJSON")
router.HandleFunc("/export", handler.chkAuthZ(handler.handleGetExport, authz.Read)).Methods("GET").Name("GetExport")
router.HandleFunc("/import-atomic-record", handler.chkAuthZ(handler.handlePostImportAtomicRecord, authz.Admin)).Methods("POST").Name("PostImportAtomicRecord")
router.HandleFunc("/index", handler.chkAuthZ(handler.handleGetIndexes, authz.Read)).Methods("GET").Name("GetIndexes")
router.HandleFunc("/index", handler.chkAuthZ(handler.handlePostIndex, authz.Admin)).Methods("POST").Name("PostIndex")
router.HandleFunc("/index/", handler.chkAuthZ(handler.handlePostIndex, authz.Admin)).Methods("POST").Name("PostIndex")
router.HandleFunc("/index/{index}", handler.chkAuthZ(handler.handleGetIndex, authz.Read)).Methods("GET").Name("GetIndex")
router.HandleFunc("/index/{index}", handler.chkAuthZ(handler.handlePostIndex, authz.Admin)).Methods("POST").Name("PostIndex")
router.HandleFunc("/index/{index}", handler.chkAuthZ(handler.handleDeleteIndex, authz.Admin)).Methods("DELETE").Name("DeleteIndex")
//router.HandleFunc("/index/{index}/field", handler.chkAuthZ(handler.handleGetFields, authz.Read)).Methods("GET") // Not implemented.
router.HandleFunc("/index/{index}/field", handler.chkAuthZ(handler.handlePostField, authz.Write)).Methods("POST").Name("PostField")
router.HandleFunc("/index/{index}/field/", handler.chkAuthZ(handler.handlePostField, authz.Write)).Methods("POST").Name("PostField")
router.HandleFunc("/index/{index}/field/{field}/view", handler.chkAuthZ(handler.handleGetView, authz.Admin)).Methods("GET")
router.HandleFunc("/index/{index}/field/{field}/view/{view}", handler.chkAuthZ(handler.handleDeleteView, authz.Admin)).Methods("DELETE").Name("DeleteView")
router.HandleFunc("/index/{index}/field/{field}", handler.chkAuthZ(handler.handlePostField, authz.Write)).Methods("POST").Name("PostField")
router.HandleFunc("/index/{index}/field/{field}", handler.chkAuthZ(handler.handlePatchField, authz.Write)).Methods("PATCH").Name("PatchField")
router.HandleFunc("/index/{index}/field/{field}", handler.chkAuthZ(handler.handleDeleteField, authz.Write)).Methods("DELETE").Name("DeleteField")
router.HandleFunc("/index/{index}/field/{field}/import", handler.chkAuthZ(handler.handlePostImport, authz.Write)).Methods("POST").Name("PostImport")
router.HandleFunc("/index/{index}/field/{field}/mutex-check", handler.chkAuthZ(handler.handleGetMutexCheck, authz.Read)).Methods("GET").Name("GetMutexCheck")
router.HandleFunc("/index/{index}/field/{field}/import-roaring/{shard}", handler.chkAuthZ(handler.handlePostImportRoaring, authz.Write)).Methods("POST").Name("PostImportRoaring")
router.HandleFunc("/index/{index}/shard/{shard}/import-roaring", handler.chkAuthZ(handler.handlePostShardImportRoaring, authz.Write)).Methods("POST").Name("PostImportRoaring")
router.HandleFunc("/index/{index}/query", handler.chkAuthZ(handler.handlePostQuery, authz.Read)).Methods("POST").Name("PostQuery")
router.HandleFunc("/info", handler.chkAuthZ(handler.handleGetInfo, authz.Admin)).Methods("GET").Name("GetInfo")
router.HandleFunc("/recalculate-caches", handler.chkAuthZ(handler.handleRecalculateCaches, authz.Admin)).Methods("POST").Name("RecalculateCaches")
router.HandleFunc("/schema", handler.chkAuthZ(handler.handleGetSchema, authz.Read)).Methods("GET").Name("GetSchema")
router.HandleFunc("/schema/details", handler.chkAuthZ(handler.handleGetSchemaDetails, authz.Read)).Methods("GET").Name("GetSchemaDetails")
router.HandleFunc("/schema", handler.chkAuthZ(handler.handlePostSchema, authz.Admin)).Methods("POST").Name("PostSchema")
router.HandleFunc("/status", handler.chkAuthZ(handler.handleGetStatus, authz.Read)).Methods("GET").Name("GetStatus")
router.HandleFunc("/transaction", handler.chkAuthZ(handler.handlePostTransaction, authz.Read)).Methods("POST").Name("PostTransaction")
router.HandleFunc("/transaction/", handler.chkAuthZ(handler.handlePostTransaction, authz.Read)).Methods("POST").Name("PostTransaction")
router.HandleFunc("/transaction/{id}", handler.chkAuthZ(handler.handleGetTransaction, authz.Read)).Methods("GET").Name("GetTransaction")
router.HandleFunc("/transaction/{id}", handler.chkAuthZ(handler.handlePostTransaction, authz.Read)).Methods("POST").Name("PostTransaction")
router.HandleFunc("/transaction/{id}/finish", handler.chkAuthZ(handler.handlePostFinishTransaction, authz.Read)).Methods("POST").Name("PostFinishTransaction")
router.HandleFunc("/transactions", handler.chkAuthZ(handler.handleGetTransactions, authz.Read)).Methods("GET").Name("GetTransactions")
router.HandleFunc("/queries", handler.chkAuthZ(handler.handleGetActiveQueries, authz.Admin)).Methods("GET").Name("GetActiveQueries")
// enable this endpoint based on config
if handler.sqlEnabled {
router.HandleFunc("/sql", handler.chkAuthZ(handler.handlePostSQL, authz.Admin)).Methods("POST").Name("PostSQL")
}
router.HandleFunc("/query-history", handler.chkAuthZ(handler.handleGetPastQueries, authz.Admin)).Methods("GET").Name("GetPastQueries")
router.HandleFunc("/version", handler.handleGetVersion).Methods("GET").Name("GetVersion")
// /ui endpoints are for UI use; they may change at any time.
router.HandleFunc("/ui/transaction", handler.chkAuthZ(handler.handleGetTransactionList, authz.Read)).Methods("GET").Name("GetTransactionList")
router.HandleFunc("/ui/transaction/", handler.chkAuthZ(handler.handleGetTransactionList, authz.Read)).Methods("GET").Name("GetTransactionList")
router.HandleFunc("/ui/shard-distribution", handler.chkAuthZ(handler.handleGetShardDistribution, authz.Admin)).Methods("GET").Name("GetShardDistribution")
// /internal endpoints are for internal use only; they may change at any time.
// DO NOT rely on these for external applications!
// Truly used internally by featurebase
router.HandleFunc("/internal/cluster/message", handler.chkInternal(handler.handlePostClusterMessage)).Methods("POST").Name("PostClusterMessage")
router.HandleFunc("/internal/translate/data", handler.chkAuthZ(handler.handleGetTranslateData, authz.Read)).Methods("GET").Name("GetTranslateData")
router.HandleFunc("/internal/translate/data", handler.chkAuthZ(handler.handlePostTranslateData, authz.Write)).Methods("POST").Name("PostTranslateData")
// other ones
router.HandleFunc("/internal/mem-usage", handler.chkAuthZ(handler.handleGetMemUsage, authz.Read)).Methods("GET").Name("GetUsage")
router.HandleFunc("/internal/disk-usage", handler.chkAuthZ(handler.handleGetDiskUsage, authz.Read)).Methods("GET").Name("GetUsage")
router.HandleFunc("/internal/disk-usage/{index}", handler.chkAuthZ(handler.handleGetDiskUsage, authz.Read)).Methods("GET").Name("GetUsage")
router.HandleFunc("/internal/fragment/block/data", handler.chkAuthN(handler.handleGetFragmentBlockData)).Methods("GET").Name("GetFragmentBlockData")
router.HandleFunc("/internal/fragment/blocks", handler.chkAuthN(handler.handleGetFragmentBlocks)).Methods("GET").Name("GetFragmentBlocks")
router.HandleFunc("/internal/fragment/data", handler.chkAuthN(handler.handleGetFragmentData)).Methods("GET").Name("GetFragmentData")
router.HandleFunc("/internal/fragment/nodes", handler.chkAuthN(handler.handleGetFragmentNodes)).Methods("GET").Name("GetFragmentNodes")
router.HandleFunc("/internal/partition/nodes", handler.chkAuthN(handler.handleGetPartitionNodes)).Methods("GET").Name("GetPartitionNodes")
router.HandleFunc("/internal/translate/keys", handler.chkAuthN(handler.handlePostTranslateKeys)).Methods("POST").Name("PostTranslateKeys")
router.HandleFunc("/internal/translate/ids", handler.chkAuthN(handler.handlePostTranslateIDs)).Methods("POST").Name("PostTranslateIDs")
router.HandleFunc("/internal/index/{index}/field/{field}/mutex-check", handler.chkAuthZ(handler.handleInternalGetMutexCheck, authz.Read)).Methods("GET").Name("InternalGetMutexCheck")
router.HandleFunc("/internal/index/{index}/field/{field}/remote-available-shards/{shardID}", handler.chkAuthZ(handler.handleDeleteRemoteAvailableShard, authz.Admin)).Methods("DELETE")
router.HandleFunc("/internal/index/{index}/shard/{shard}/snapshot", handler.chkAuthZ(handler.handleGetIndexShardSnapshot, authz.Read)).Methods("GET").Name("GetIndexShardSnapshot")
router.HandleFunc("/internal/index/{index}/shards", handler.chkAuthZ(handler.handleGetIndexAvailableShards, authz.Read)).Methods("GET").Name("GetIndexAvailableShards")
router.HandleFunc("/internal/nodes", handler.chkAuthN(handler.handleGetNodes)).Methods("GET").Name("GetNodes")
router.HandleFunc("/internal/shards/max", handler.chkAuthN(handler.handleGetShardsMax)).Methods("GET").Name("GetShardsMax") // TODO: deprecate, but it's being used by the client
router.HandleFunc("/internal/ingest/{index}", handler.chkAuthZ(handler.handlePostIngestData, authz.Write)).Methods("POST").Name("PostIngestData")
router.HandleFunc("/internal/ingest/{index}/node", handler.chkAuthZ(handler.handlePostIngestNode, authz.Write)).Methods("POST").Name("PostIngestNode")
router.HandleFunc("/internal/schema", handler.chkAuthZ(handler.handleIngestSchema, authz.Admin)).Methods("POST").Name("PostIngestSchema")
router.HandleFunc("/internal/translate/index/{index}/keys/find", handler.chkAuthZ(handler.handleFindIndexKeys, authz.Admin)).Methods("POST").Name("FindIndexKeys")
router.HandleFunc("/internal/translate/index/{index}/keys/create", handler.chkAuthZ(handler.handleCreateIndexKeys, authz.Admin)).Methods("POST").Name("CreateIndexKeys")
router.HandleFunc("/internal/translate/index/{index}/{partition}", handler.chkAuthZ(handler.handlePostTranslateIndexDB, authz.Admin)).Methods("POST").Name("PostTranslateIndexDB")
router.HandleFunc("/internal/translate/field/{index}/{field}", handler.chkAuthZ(handler.handlePostTranslateFieldDB, authz.Admin)).Methods("POST").Name("PostTranslateFieldDB")
router.HandleFunc("/internal/translate/field/{index}/{field}/keys/find", handler.chkAuthZ(handler.handleFindFieldKeys, authz.Admin)).Methods("POST").Name("FindFieldKeys")
router.HandleFunc("/internal/translate/field/{index}/{field}/keys/create", handler.chkAuthZ(handler.handleCreateFieldKeys, authz.Admin)).Methods("POST").Name("CreateFieldKeys")
router.HandleFunc("/internal/translate/field/{index}/{field}/keys/like", handler.chkAuthZ(handler.handleMatchField, authz.Read)).Methods("POST").Name("MatchFieldKeys")
router.HandleFunc("/internal/idalloc/reserve", handler.chkAuthN(handler.handleReserveIDs)).Methods("POST").Name("ReserveIDs")
router.HandleFunc("/internal/idalloc/commit", handler.chkAuthN(handler.handleCommitIDs)).Methods("POST").Name("CommitIDs")
router.HandleFunc("/internal/idalloc/restore", handler.chkAuthN(handler.handleRestoreIDAlloc)).Methods("POST").Name("RestoreIDAllocData")
router.HandleFunc("/internal/idalloc/reset/{index}", handler.chkAuthN(handler.handleResetIDAlloc)).Methods("POST").Name("ResetIDAlloc")
router.HandleFunc("/internal/idalloc/data", handler.chkAuthN(handler.handleIDAllocData)).Methods("GET").Name("IDAllocData")
router.HandleFunc("/internal/restore/{index}/{shardID}", handler.chkAuthZ(handler.handlePostRestore, authz.Admin)).Methods("POST").Name("Restore")
router.HandleFunc("/internal/debug/rbf", handler.chkAuthZ(handler.handleGetInternalDebugRBFJSON, authz.Admin)).Methods("GET").Name("GetInternalDebugRBFJSON")
// endpoints for collecting cpu profiles from a chosen begin point to
// when the client wants to stop. Used for profiling imports that
// could be long or short.
router.HandleFunc("/cpu-profile/start", handler.chkAuthZ(handler.handleCPUProfileStart, authz.Admin)).Methods("GET").Name("CPUProfileStart")
router.HandleFunc("/cpu-profile/stop", handler.chkAuthZ(handler.handleCPUProfileStop, authz.Admin)).Methods("GET").Name("CPUProfileStop")
router.HandleFunc("/login", handler.handleLogin).Methods("GET").Name("Login")
router.HandleFunc("/logout", handler.handleLogout).Methods("GET").Name("Logout")
router.HandleFunc("/redirect", handler.handleRedirect).Methods("GET").Name("Redirect")
router.HandleFunc("/auth", handler.handleCheckAuthentication).Methods("GET").Name("CheckAuthentication")
router.HandleFunc("/userinfo", handler.handleUserInfo).Methods("GET").Name("UserInfo")
router.HandleFunc("/internal/oauth-config", handler.handleOAuthConfig).Methods("GET").Name("GetOAuthConfig")
// Endpoints to support lattice UI embedded via statik.
// The messiness here reflects the fact that assets live in a nontrivial
// directory structure that is controlled externally.
latticeHandler := newStatikHandler(handler)
router.PathPrefix("/static").Handler(latticeHandler)
router.Path("/").Handler(latticeHandler)
router.Path("/favicon.png").Handler(latticeHandler)
router.Path("/favicon.svg").Handler(latticeHandler)
router.Path("/manifest.json").Handler(latticeHandler)
for _, route := range latticeRoutes {
router.Path(route).Handler(latticeHandler)
}
router.Use(handler.queryArgValidator)
router.Use(handler.addQueryContext)
router.Use(handler.extractTracing)
router.Use(handler.monitorPerformance)
router.Use(handler.collectStats)
var h http.Handler = router
for _, middleware := range handler.middleware {
// Ideally, we would use `router.Use` to inject middleware,
// instead of wrapping the handler. The reason we can't is
// because the router will only apply middleware to matched
// handlers. In this case, it won't match handlers with the
// OPTIONS method, needed by the CORS middleware. This issue
// is described in detail here:
// https://github.com/gorilla/handlers/issues/142
h = middleware(h)
}
return h
}
// ServeHTTP handles an HTTP request.
func (h *Handler) ServeHTTP(w http.ResponseWriter, r *http.Request) {
defer func() {
if err := recover(); err != nil {
w.WriteHeader(http.StatusInternalServerError)
stack := debug.Stack()
msg := "%s\n%s"
h.logger.Panicf(msg, err, stack)
fmt.Fprintf(w, msg, err, stack)
}
}()
h.Handler.ServeHTTP(w, r)
}
func (h *Handler) chkInternal(handler http.HandlerFunc) http.HandlerFunc {
return func(w http.ResponseWriter, r *http.Request) {
if h.auth != nil {
secret, ok := r.Header["X-Feature-Key"]
var secretString string
if ok {
secretString = secret[0]
}
decodedString, err := hex.DecodeString(secretString)
if err != nil || !ok || !bytes.Equal(decodedString, h.auth.SecretKey()) {
http.Error(w, "internal secret key validation failed", http.StatusUnauthorized)
return
}
}
handler.ServeHTTP(w, r)
}
}
func (h *Handler) chkAllowedNetworks(r *http.Request) (bool, context.Context) {
// for every request, get IP of the request and check against configured IPs
reqIP := GetIP(r)
if reqIP == "" {
return false, r.Context()
}
// if client IP is in allowed networks
// add it to the context for key X-Molecula-Original-IP
if h.auth.CheckAllowedNetworks(reqIP) {
ctx := context.WithValue(r.Context(), OriginalIPHeader, reqIP)
return true, ctx
}
return false, r.Context()
}
func (h *Handler) chkAuthN(handler http.HandlerFunc) http.HandlerFunc {
return func(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
if h.auth != nil {
// if IP is in allowed networks, then serve the request
allowedNetwork, ctx := h.chkAllowedNetworks(r)
if allowedNetwork {
handler.ServeHTTP(w, r.WithContext(ctx))
return
}
access, refresh := getTokens(r)
uinfo, err := h.auth.Authenticate(access, refresh)
if err != nil {
http.Error(w, errors.Wrap(err, "authenticating").Error(), http.StatusUnauthorized)
return
}
// just in case it got refreshed
ctx = context.WithValue(ctx, authn.ContextValueAccessToken, "Bearer "+access)
ctx = context.WithValue(ctx, authn.ContextValueRefreshToken, refresh)
h.auth.SetCookie(w, uinfo.Token, uinfo.RefreshToken, uinfo.Expiry)
}
handler.ServeHTTP(w, r.WithContext(ctx))
}
}
func (h *Handler) chkAuthZ(handler http.HandlerFunc, perm authz.Permission) http.HandlerFunc {
return func(w http.ResponseWriter, r *http.Request) {
// if auth isn't turned on, just serve the request
if h.auth == nil {
handler.ServeHTTP(w, r)
return
}
// check if IP is in allowed networks, if yes give it admin permissions
allowedNetwork, ctx := h.chkAllowedNetworks(r)
if allowedNetwork {
ctx = context.WithValue(ctx, contextKeyGroupMembership, []string{AllowedNetworksGroupName, h.permissions.Admin})
handler.ServeHTTP(w, r.WithContext(ctx))
return
}
// make a copy of the requested permissions
lperm := perm
// check if the user is authenticated
access, refresh := getTokens(r)
uinfo, err := h.auth.Authenticate(access, refresh)
if err != nil {
http.Error(w, errors.Wrap(err, "authenticating").Error(), http.StatusForbidden)
return
}
// just in case it got refreshed
h.auth.SetCookie(w, uinfo.Token, uinfo.RefreshToken, uinfo.Expiry)
// put the user's authN/Z info in the context
ctx = context.WithValue(r.Context(), contextKeyGroupMembership, uinfo.Groups)
ctx = context.WithValue(ctx, authn.ContextValueAccessToken, "Bearer "+uinfo.Token)
ctx = context.WithValue(ctx, authn.ContextValueRefreshToken, uinfo.RefreshToken)
// unlikely h.permissions will be nil, but we'll check to be safe
if h.permissions == nil {
h.logger.Errorf("authentication is turned on without authorization permissions set")
http.Error(w, "authorizing", http.StatusInternalServerError)
return
}
// figure out what the user is querying for
queryString := ""
queryRequest := ctx.Value(contextKeyQueryRequest)
if req, ok := queryRequest.(*QueryRequest); ok {
queryString = req.Query
q, err := pql.ParseString(queryString)
if err != nil {
http.Error(w, errors.Wrap(err, "parsing query string").Error(), http.StatusBadRequest)
return
}
// if there are write calls, and the needed perms don't already
// satisfy write permissions, then make them write permissions
if q.WriteCallN() > 0 && !lperm.Satisfies(authz.Write) {
lperm = authz.Write
}
}
// make the query string pretty
queryString = strings.Replace(queryString, "\n", "", -1)
// figure out if we should log this query
toLog := true
for _, ep := range []string{"/status", "/metrics", "/info", "/internal"} {
if strings.HasPrefix(r.URL.Path, ep) {
toLog = false
break
}
}
if toLog {
h.queryLogger.Infof("%v, %v, %v, %v, %v, %v", GetIP(r), r.UserAgent(), r.URL.Path, uinfo.UserID, uinfo.UserName, queryString)
}
// if they're an admin, they can do whatever they want
if h.permissions.IsAdmin(uinfo.Groups) {
handler.ServeHTTP(w, r.WithContext(ctx))
return
} else if lperm == authz.Admin {
// if they're not an admin, and they need to be, we can just
// error right here
http.Error(w, "Insufficient permissions: user does not have admin permission", http.StatusForbidden)
return
}
// try to get the index name
indexName, ok := mux.Vars(r)["index"]
if !ok {
indexName = r.URL.Query().Get("index")
}
// if we have an index name, then we check the user permissions
// against that index
if indexName != "" {
p, err := h.permissions.GetPermissions(uinfo, indexName)
if err != nil {
w.Header().Add("Content-Type", "text/plain")
http.Error(w, errors.Wrap(err, "Insufficient Permissions").Error(), http.StatusForbidden)
return
}
// if they're not permitted to access this index, error
if !p.Satisfies(lperm) {
w.Header().Add("Content-Type", "text/plain")
http.Error(w, "Insufficient permissions", http.StatusForbidden)
return
}
}
handler.ServeHTTP(w, r.WithContext(ctx))
}
}
func GetIP(r *http.Request) string {
// check if original IP was set in the request
og := r.Header.Get(OriginalIPHeader)
if og != "" {
return og
}
// check if original IP is in the context
if ogIP, ok := r.Context().Value(OriginalIPHeader).(string); ok && ogIP != "" {
return ogIP
}
// X-Forwarded-For can have multiple IPs
// the first IP will always be the originating client IP
// the remaining IPs will be for any proxies the request went through
forwarded := r.Header.Get(ForwardedIPHeader)
forwardedList := strings.Split(forwarded, ",")
if forwardedList[0] != "" {
return forwardedList[0]
}
return r.RemoteAddr
}
// statikHandler implements the http.Handler interface, and responds to
// requests for static assets with the appropriate file contents embedded
// in a statik filesystem.
type statikHandler struct {
handler *Handler
statikFS http.FileSystem
}
// newStatikHandler returns a new instance of statikHandler
func newStatikHandler(h *Handler) statikHandler {
fs, err := h.fileSystem.New()
if err == nil {
h.logger.Printf("enabled Web UI at %s", h.url)
}
return statikHandler{
handler: h,
statikFS: fs,
}
}
func (s statikHandler) ServeHTTP(w http.ResponseWriter, r *http.Request) {
if strings.HasPrefix(r.UserAgent(), "curl") {
msg := "Welcome. FeatureBase v" + s.handler.api.Version() + " is running. Visit https://docs.featurebase.com for more information."
if s.statikFS != nil {
msg += " Try the Web UI by visiting this URL in your browser."
}
http.Error(w, msg, http.StatusNotFound)
return
}
if s.statikFS == nil {
msg := "Web UI is not available. Please run `make generate-statik` before building Pilosa with `make install`."
s.handler.logger.Infof(msg)
http.Error(w, msg, http.StatusInternalServerError)
return
}
// Without this check, refreshing the UI at e.g. /query
// will request a nonexistent resource and return 404.
for _, route := range latticeRoutes {
if r.URL.String() == route {
url, _ := url.Parse("/")
r.URL = url
}
}
http.FileServer(s.statikFS).ServeHTTP(w, r)
}
// successResponse is a general success/error struct for http responses.
type successResponse struct {
h *Handler
Success bool `json:"success"`
Name string `json:"name,omitempty"`
CreatedAt int64 `json:"createdAt,omitempty"`
Error *HTTPError `json:"error,omitempty"`
}
// Error defines a standard application error.
type HTTPError struct {
// Human-readable message.
Message string `json:"message"`
}
// Error returns the string representation of the error message.
func (e *HTTPError) Error() string {
return e.Message
}
// check determines success or failure based on the error.
// It also returns the corresponding http status code.
func (r *successResponse) check(err error) (statusCode int) {
if err == nil {
r.Success = true
return 0
}
cause := errors.Cause(err)
// Determine HTTP status code based on the error type.
switch cause.(type) {
case BadRequestError:
statusCode = http.StatusBadRequest
case ConflictError:
statusCode = http.StatusConflict
case NotFoundError:
// TODO I think any error matches NotFoundError because it's a `type NotFoundError error`
statusCode = http.StatusNotFound
default:
statusCode = http.StatusInternalServerError
}
r.Success = false
r.Error = &HTTPError{Message: err.Error()}
return statusCode
}
// write sends a response to the http.ResponseWriter based on the success
// status and the error.
func (r *successResponse) write(w http.ResponseWriter, err error) {
// Apply the error and get the status code.
statusCode := r.check(err)
// Marshal the json response.
msg, err := json.Marshal(r)
if err != nil {
http.Error(w, string(msg), http.StatusInternalServerError)
return
}
// Write the response.
if statusCode == 0 {
w.Header().Set("Content-Type", "application/json")
_, err := w.Write(msg)
if err != nil {
r.h.logger.Errorf("error writing response: %v", err)
return
}
_, err = w.Write([]byte("\n"))
if err != nil {
r.h.logger.Errorf("error writing newline after response: %v", err)
return
}
} else {
http.Error(w, string(msg), statusCode)
}
}
// validHeaderAcceptJSON returns false if one or more Accept
// headers are present, but none of them are "application/json"
// (or any matching wildcard). Otherwise returns true.
func validHeaderAcceptJSON(header http.Header) bool {
return validHeaderAcceptType(header, "application", "json")
}
func validHeaderAcceptType(header http.Header, typ, subtyp string) bool {
if v, found := header["Accept"]; found {
for _, v := range v {
t, _, err := mime.ParseMediaType(v)
if err != nil {
switch err {
case mime.ErrInvalidMediaParameter:
// This is an optional feature, so we can keep going anyway.
default:
continue
}
}
spl := strings.SplitN(t, "/", 2)
if len(spl) < 2 {
continue
}
switch {
case spl[0] == typ && spl[1] == subtyp:
return true
case spl[0] == "*" && spl[1] == subtyp:
return true
case spl[0] == typ && spl[1] == "*":
return true
case spl[0] == "*" && spl[1] == "*":
return true
}
}
return false
}
return true
}
// headerAcceptRoaringRow tells us that the request should accept roaring
// rows in response.
func headerAcceptRoaringRow(header http.Header) bool {
for _, v := range header["X-Pilosa-Row"] {
if v == "roaring" {
return true
}
}
return false
}
func (h *Handler) filterSchema(schema []*IndexInfo, g []authn.Group) []*IndexInfo {
if !h.permissions.IsAdmin(g) {
var filtered []*IndexInfo
allowed := h.permissions.GetAuthorizedIndexList(g, authz.Read)
for _, s := range schema {
for _, index := range allowed {
if s.Name == index {
filtered = append(filtered, s)
break
}
}
}
schema = filtered
}
return schema
}
func (h *Handler) getGroupMembership(r *http.Request) (g []authn.Group) {
// if IP is in allowed networks, then give admin group membership
if h.auth.CheckAllowedNetworks(GetIP(r)) {
g = []authn.Group{
{
GroupID: h.permissions.Admin,
GroupName: AllowedNetworksGroupName,
},
}
return g
}
// check if group membership was already set in request when auth token was obtained
g = r.Context().Value(contextKeyGroupMembership).([]authn.Group)
return g
}
// handleGetSchema handles GET /schema requests.
func (h *Handler) handleGetSchema(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
q := r.URL.Query()
withViews := q.Get("views") == "true"
w.Header().Set("Content-Type", "application/json")
schema, err := h.api.Schema(r.Context(), withViews)
if err != nil {
h.logger.Printf("getting schema error: %s", err)
}
// if auth is turned on, filter response to only include authorized indexes
if h.auth != nil {
g := h.getGroupMembership(r)
if g == nil {
http.Error(w, "Forbidden", http.StatusForbidden)
return
}
schema = h.filterSchema(schema, g)
}
if err := json.NewEncoder(w).Encode(Schema{Indexes: schema}); err != nil {
h.logger.Errorf("write schema response error: %s", err)
}
}
// handleGetSchema handles GET /schema/details requests. This is essentially the
// same thing as a GET /schema request, except WithViews is turned on by default.
// Previously, /schema/details returned the cardinality of each field, but this was
// removed for performance reasons. If, at some point in the future, there is a more
// performant way to get the cardinality of a field, that information would be
// included here.
func (h *Handler) handleGetSchemaDetails(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
w.Header().Set("Content-Type", "application/json")
schema, err := h.api.Schema(r.Context(), true)
if err != nil {
h.logger.Printf("error getting detailed schema: %s", err)
return
}
// if auth is turned on, filter response to only include authorized indexes
if h.auth != nil {
g := h.getGroupMembership(r)
if g == nil {
http.Error(w, "Forbidden", http.StatusForbidden)
return
}
schema = h.filterSchema(schema, g)
}
if err := json.NewEncoder(w).Encode(Schema{Indexes: schema}); err != nil {
h.logger.Printf("write schema response error: %s", err)
}
}
func (h *Handler) handlePostSchema(w http.ResponseWriter, r *http.Request) {
q := r.URL.Query()
remoteStr := q.Get("remote")
var remote bool
if remoteStr == "true" {
remote = true
}
schema := &Schema{}
if err := json.NewDecoder(r.Body).Decode(schema); err != nil {
http.Error(w, fmt.Sprintf("decoding request as JSON Pilosa schema: %v", err), http.StatusBadRequest)
return
}
if err := h.api.ApplySchema(r.Context(), schema, remote); err != nil {
http.Error(w, fmt.Sprintf("apply schema to Pilosa: %v", err), http.StatusBadRequest)
return
}
w.WriteHeader(http.StatusNoContent)
}
// handleGetMemUsage handles GET /internal/mem-usage requests.
func (h *Handler) handleGetMemUsage(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
use, err := GetMemoryUsage()
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(use); err != nil {
h.logger.Errorf("write mem usage response error: %s", err)
}
}
// handleGetDiskUsage handles GET /internal/disk-usage requests.
func (h *Handler) handleGetDiskUsage(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
u := h.api.server.dataDir
indexName, ok := mux.Vars(r)["index"]
if ok {
u = fmt.Sprintf("%s/indexes/%s", u, indexName)
}
use, err := GetDiskUsage(u)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(use); err != nil {
h.logger.Errorf("write disk usage response error: %s", err)
}
}
// handleGetShardDistribution handles GET /ui/shard-distribution requests.
func (h *Handler) handleGetShardDistribution(w http.ResponseWriter, r *http.Request) {
dist := h.api.ShardDistribution(r.Context())
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(dist); err != nil {
h.logger.Errorf("write status response error: %s", err)
}
}
// handleGetStatus handles GET /status requests.
func (h *Handler) handleGetStatus(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
state, err := h.api.State()
if err != nil {
http.Error(w, "getting cluster state error: "+err.Error(), http.StatusInternalServerError)
return
}
status := getStatusResponse{
State: string(state),
Nodes: h.api.Hosts(r.Context()),
LocalID: h.api.Node().ID,
ClusterName: h.api.ClusterName(),
}
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(status); err != nil {
h.logger.Errorf("write status response error: %s", err)
}
}
func (h *Handler) handleGetInfo(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
info := h.api.Info()
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(info); err != nil {
h.logger.Errorf("write info response error: %s", err)
}
}
type getSchemaResponse struct {
Indexes []*IndexInfo `json:"indexes"`
}
type getStatusResponse struct {
State string `json:"state"`
Nodes []*disco.Node `json:"nodes"`
LocalID string `json:"localID"`
ClusterName string `json:"clusterName"`
}
func httpHash(s string) string {
hasher := blake3.New()
_, _ = hasher.Write([]byte(s))
var buf [16]byte
_, _ = hasher.Digest().Read(buf[0:])
return fmt.Sprintf("%x", buf)
}
var DoPerQueryProfiling = false
// handlePostQuery handles /query requests.
func (h *Handler) handlePostQuery(w http.ResponseWriter, r *http.Request) {
// Read previouly parsed request from context
qreq := r.Context().Value(contextKeyQueryRequest)
qerr := r.Context().Value(contextKeyQueryError)
req, ok := qreq.(*QueryRequest)
if DoPerQueryProfiling {
backend := storage.DefaultBackend
reqHash := httpHash(req.Query)
qlen := len(req.Query)
if qlen > 100 {
qlen = 100
}
name := "_query." + reqHash + "." + backend + "." + time.Now().Format("20060102150405") + "." + req.Query[:qlen]
f, err := os.Create(name)
if err != nil {
panic(err)
}
defer f.Close()
_ = pprof.StartCPUProfile(f)
defer pprof.StopCPUProfile()
} // end DoPerQueryProfiling
var err error
err, _ = qerr.(error)
if err != nil || !ok {
w.WriteHeader(http.StatusBadRequest)
e := h.writeQueryResponse(w, r, &QueryResponse{Err: err})
if e != nil {
h.logger.Errorf("write query response error: %v (while trying to write another error: %v)", e, err)
}
return
}
// TODO: Remove
req.Index = mux.Vars(r)["index"]
resp, err := h.api.Query(r.Context(), req)
if err != nil {
switch errors.Cause(err) {
case ErrTooManyWrites:
w.WriteHeader(http.StatusRequestEntityTooLarge)
case ErrTranslateStoreReadOnly:
u := h.api.PrimaryReplicaNodeURL()
u.Path, u.RawQuery = r.URL.Path, r.URL.RawQuery
http.Redirect(w, r, u.String(), http.StatusFound)
return
default:
w.WriteHeader(http.StatusBadRequest)
}
e := h.writeQueryResponse(w, r, &QueryResponse{Err: err})
if e != nil {
h.logger.Errorf("write query response error: %v (while trying to write another error: %v)", e, err)
}
return
}
// Set appropriate status code, if there is an error. It doesn't appear that
// resp.Err could ever be set in API.Query, so this code block is probably
// doing nothing right now.
if resp.Err != nil {
switch errors.Cause(resp.Err) {
case ErrTooManyWrites:
w.WriteHeader(http.StatusRequestEntityTooLarge)
default:
w.WriteHeader(http.StatusBadRequest)
}
}
// Write response back to client.
if err := h.writeQueryResponse(w, r, &resp); err != nil {
h.logger.Errorf("write query response error: %s", err)
}
}
func (h *Handler) writeBadRequest(w http.ResponseWriter, r *http.Request, err error) {
w.WriteHeader(http.StatusBadRequest)
e := h.writeQueryResponse(w, r, &QueryResponse{Err: err})
if e != nil {
h.logger.Errorf("write query response error: %v (while trying to write another error: %v)", e, err)
}
}
// handlePostSQL handles /sql requests.
func (h *Handler) handlePostSQL(w http.ResponseWriter, r *http.Request) {
b, err := io.ReadAll(r.Body)
if err != nil {
h.writeBadRequest(w, r, err)
return
}
start := time.Now()
rootOperator, err := h.api.CompilePlan(r.Context(), string(b))
if err != nil {
h.writeBadRequest(w, r, err)
return
}
// Write response back to client.
w.Header().Set("Content-Type", "application/json")
// the pandas data frame format in json per https://molecula.atlassian.net/wiki/spaces/MOLECULA/pages/540999700/Queries
// Opening bracket.
w.Write([]byte("{"))
// Write the closing bracket on any exit from this method.
defer func() {
duration := time.Since(start)
value, err := json.Marshal(duration.Microseconds())
if err != nil {
value = big.NewInt(-1).Bytes()
}
w.Write([]byte(`,"exec_time":`))
w.Write(value)
w.Write([]byte("}"))
}()
// writeError is a helper function that can be called anywhere during the
// output handling to insert an error into the json output.
writeError := func(err error) {
if err != nil {
errMsg, err := json.Marshal(err.Error())
if err != nil {
errMsg = []byte(`"PROBLEM ENCODING ERROR MESSAGE"`)
}
w.Write([]byte(`,"error":`))
w.Write(errMsg)
}
}
// writeWarnings is a helper function that can be called anywhere during the
// output handling to insert warnings into the json output.
writeWarnings := func(warnings []string) {
if len(warnings) > 0 {
w.Write([]byte(`,"warnings": [`))
for i, warn := range warnings {
warnMsg, err := json.Marshal(warn)
if err != nil {
warnMsg = []byte(`"PROBLEM ENCODING WARNING"`)
}
w.Write(warnMsg)
if i < len(warnings)-1 {
w.Write([]byte(`,`))
}
}
w.Write([]byte(`]`))
}
}
// Get a query iterator.
iter, err := rootOperator.Iterator(r.Context(), nil)
if err != nil {
writeError(err)
writeWarnings(rootOperator.Warnings())
return
}
// Read schema & write to response.
columns := rootOperator.Schema()
schema := SQLSchema{
Fields: make([]*SQLField, len(columns)),
}
for i, col := range columns {
schema.Fields[i] = &SQLField{
Name: col.Name,
Type: col.Type.TypeName(),
}
}
w.Write([]byte(`"schema":`))
jsonSchema, err := json.Marshal(schema)
if err != nil {
h.logger.Errorf("write schema response error: %s", err)
// Provide an empty list as the schema value to maintain valid json.
w.Write([]byte("[]"))
writeError(err)
writeWarnings(rootOperator.Warnings())
return
}
w.Write(jsonSchema)
// Write the data (rows).
w.Write([]byte(`,"data":[`))
var rowErr error
var currentRow types.Row
var nextErr error
rowCounter := 1
for currentRow, nextErr = iter.Next(r.Context()); nextErr == nil; currentRow, nextErr = iter.Next(r.Context()) {
jsonRow, err := json.Marshal(currentRow)
if err != nil {
h.logger.Errorf("json encoding error: %s", err)
rowErr = err
break
}
if rowCounter > 1 {
// Include a comma between data rows.
w.Write([]byte(","))
}
w.Write(jsonRow)
rowCounter++
}
if nextErr != nil && nextErr != types.ErrNoMoreRows {
rowErr = nextErr
}
w.Write([]byte("]"))
writeError(rowErr)
writeWarnings(rootOperator.Warnings())
}
type SQLField struct {
Name string `json:"name"`
Type string `json:"type"`
}
type SQLSchema struct {
Fields []*SQLField `json:"fields"`
}
func (h *Handler) handleCPUProfileStart(w http.ResponseWriter, r *http.Request) {
if h.pprofCPUProfileBuffer == nil {
h.pprofCPUProfileBuffer = bytes.NewBuffer(nil)
} else {
http.Error(w, "cpu profile already in progress", http.StatusBadRequest)
return
}
err := pprof.StartCPUProfile(h.pprofCPUProfileBuffer)
if err != nil {
http.Error(w, fmt.Sprintf("%v", err), http.StatusBadRequest)
h.pprofCPUProfileBuffer = nil
return
}
w.WriteHeader(http.StatusOK)
}
func (h *Handler) handleCPUProfileStop(w http.ResponseWriter, r *http.Request) {
if h.pprofCPUProfileBuffer == nil {
http.Error(w, "no cpu profile in progress", http.StatusBadRequest)
return
}
pprof.StopCPUProfile()
// match what pprof usually returns:
// HTTP/1.1 200 OK
// Content-Disposition: attachment; filename="profile"
// Content-Type: application/octet-stream
// X-Content-Type-Options: nosniff
// Date: Tue, 03 Nov 2020 18:31:36 GMT
// Content-Length: 939
//Send the headers
by := h.pprofCPUProfileBuffer.Bytes()
w.Header().Set("Content-Disposition", "attachment; filename=\"profile\"")
w.Header().Set("Content-Type", "application/octet-stream")
w.Header().Set("Content-Length", fmt.Sprintf("%v", len(by)))
w.Header().Set("X-Content-Type-Options", "nosniff")
_, err := io.Copy(w, h.pprofCPUProfileBuffer)
h.pprofCPUProfileBuffer = nil
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
}
// handleGetIndexAvailableShards handles GET /internal/index/:index/shards requests.
func (h *Handler) handleGetIndexAvailableShards(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
indexName := mux.Vars(r)["index"]
shards, err := h.api.AvailableShards(r.Context(), indexName)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(getIndexAvailableShardsResponse{Shards: shards.Slice()}); err != nil {
h.logger.Errorf("write shards-max response error: %s", err)
}
}
type getIndexAvailableShardsResponse struct {
Shards []uint64 `json:"shards"`
}
// handleGetShardsMax handles GET /internal/shards/max requests.
func (h *Handler) handleGetShardsMax(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(getShardsMaxResponse{
Standard: h.api.MaxShards(r.Context()),
}); err != nil {
h.logger.Errorf("write shards-max response error: %s", err)
}
}
type getShardsMaxResponse struct {
Standard map[string]uint64 `json:"standard"`
}
// handleGetIndexes handles GET /index request.
func (h *Handler) handleGetIndexes(w http.ResponseWriter, r *http.Request) {
h.handleGetSchema(w, r)
}
// handleGetIndex handles GET /index/<indexname> requests.
func (h *Handler) handleGetIndex(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
q := r.URL.Query()
withViews := q.Get("views") == "true"
indexName := mux.Vars(r)["index"]
schema, err := h.api.Schema(r.Context(), withViews)
if err != nil {
h.logger.Printf("getting schema error: %s", err)
}
for _, idx := range schema {
if idx.Name == indexName {
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(idx); err != nil {
h.logger.Errorf("write response error: %s", err)
}
return
}
}
http.Error(w, fmt.Sprintf("Index %s Not Found", indexName), http.StatusNotFound)
}
// handleGetView handles GET /index/<indexname>/field/<fieldname>/view requests.
func (h *Handler) handleGetView(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
indexName := mux.Vars(r)["index"]
fieldName := mux.Vars(r)["field"]
index, err := h.api.Index(r.Context(), indexName)
if err != nil {
http.Error(w, fmt.Sprintf("Index %s Not Found", indexName), http.StatusNotFound)
return
} else {
w.Header().Set("Content-Type", "application/json")
var viewsList []viewReponse
for _, field := range index.fields {
if field.name == fieldName {
for _, view := range field.views() {
viewsList = append(viewsList, viewReponse{Name: view.name, Type: view.fieldType, Field: view.field, Index: view.index})
}
if err := json.NewEncoder(w).Encode(viewsList); err != nil {
h.logger.Errorf("write response error: %s", err)
}
return
}
}
}
http.Error(w, fmt.Sprintf("Field %s Not Found", fieldName), http.StatusNotFound)
}
type viewReponse struct {
Name string `json:"name"`
Type string `json:"type"`
Field string `json:"field"`
Index string `json:"index"`
}
// handleDeleteIndex handles DELETE /index/<indexname>/field/<fieldname>/view/<viewname> request.
func (h *Handler) handleDeleteView(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
indexName := mux.Vars(r)["index"]
fieldName := mux.Vars(r)["field"]
viewName := mux.Vars(r)["view"]
resp := successResponse{h: h}
err := h.api.DeleteView(r.Context(), indexName, fieldName, viewName)
resp.write(w, err)
}
type postIndexRequest struct {
Options IndexOptions `json:"options"`
}
// _postIndexRequest is necessary to avoid recursion while decoding.
type _postIndexRequest postIndexRequest
// Custom Unmarshal JSON to validate request body when creating a new index.
func (p *postIndexRequest) UnmarshalJSON(b []byte) error {
// m is an overflow map used to capture additional, unexpected keys.
m := make(map[string]interface{})
if err := json.Unmarshal(b, &m); err != nil {
return errors.Wrap(err, "unmarshalling unexpected values")
}
validIndexOptions := getValidOptions(IndexOptions{})
err := validateOptions(m, validIndexOptions)
if err != nil {
return err
}
// Unmarshal expected values.
_p := _postIndexRequest{
Options: IndexOptions{
Keys: false,
TrackExistence: true,
},
}
if err := json.Unmarshal(b, &_p); err != nil {
return errors.Wrap(err, "unmarshalling expected values")
}
p.Options = _p.Options
return nil
}
func getValidOptions(option interface{}) []string {
validOptions := []string{}
val := reflect.ValueOf(option)
for i := 0; i < val.Type().NumField(); i++ {
jsonTag := val.Type().Field(i).Tag.Get("json")
s := strings.Split(jsonTag, ",")
validOptions = append(validOptions, s[0])
}
return validOptions
}
// Raise errors for any unknown key
func validateOptions(data map[string]interface{}, validIndexOptions []string) error {
for k, v := range data {
switch k {
case "options":
options, ok := v.(map[string]interface{})
if !ok {
return errors.New("options is not map[string]interface{}")
}
for kk, vv := range options {
if !foundItem(validIndexOptions, kk) {
return fmt.Errorf("unknown key: %v:%v", kk, vv)
}
}
default:
return fmt.Errorf("unknown key: %v:%v", k, v)
}
}
return nil
}
func foundItem(items []string, item string) bool {
for _, i := range items {
if item == i {
return true
}
}
return false
}
// handleDeleteIndex handles DELETE /index request.
func (h *Handler) handleDeleteIndex(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
indexName := mux.Vars(r)["index"]
resp := successResponse{h: h}
err := h.api.DeleteIndex(r.Context(), indexName)
resp.write(w, err)
}
// handlePostIndex handles POST /index request.
func (h *Handler) handlePostIndex(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
indexName, ok := mux.Vars(r)["index"]
if !ok {
http.Error(w, "index name is required", http.StatusBadRequest)
return
}
resp := successResponse{h: h, Name: indexName}
// Decode request.
req := postIndexRequest{
Options: IndexOptions{
Keys: false,
TrackExistence: true,
},
}
err := json.NewDecoder(r.Body).Decode(&req)
if err != nil && err != io.EOF {
resp.write(w, err)
return
}
index, err := h.api.CreateIndex(r.Context(), indexName, req.Options)
if index != nil {
resp.CreatedAt = index.CreatedAt()
} else if _, ok = errors.Cause(err).(ConflictError); ok {
if index, _ = h.api.Index(r.Context(), indexName); index != nil {
resp.CreatedAt = index.CreatedAt()
}
}
resp.write(w, err)
}
func (h *Handler) handleGetActiveQueries(w http.ResponseWriter, r *http.Request) {
var rtype string
switch {
case validHeaderAcceptType(r.Header, "text", "plain"):
rtype = "text/plain"
case validHeaderAcceptJSON(r.Header):
rtype = "application/json"
default:
http.Error(w, "no acceptable response type selected", http.StatusNotAcceptable)
return
}
queries, err := h.api.ActiveQueries(r.Context())
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
w.Header().Set("Content-Type", rtype)
switch rtype {
case "text/plain":
durations := make([]string, len(queries))
for i, q := range queries {
durations[i] = q.Age.String()
}
var maxlen int
for _, l := range durations {
if len(l) > maxlen {
maxlen = len(l)
}
}
for i, q := range queries {
_, err := fmt.Fprintf(w, "%*s%q\n", -(maxlen + 2), durations[i], q.PQL)
if err != nil {
h.logger.Errorf("sending GetActiveQueries response: %s", err)
return
}
}
if _, err := w.Write([]byte{'\n'}); err != nil {
h.logger.Errorf("sending GetActiveQueries response: %s", err)
}
case "application/json":
if err := json.NewEncoder(w).Encode(queries); err != nil {
h.logger.Errorf("encoding GetActiveQueries response: %s", err)
}
}
}
func (h *Handler) handleGetPastQueries(w http.ResponseWriter, r *http.Request) {
q := r.URL.Query()
remoteStr := q.Get("remote")
var remote bool
if remoteStr == "true" {
remote = true
}
queries, err := h.api.PastQueries(r.Context(), remote)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(queries); err != nil {
h.logger.Errorf("encoding GetActiveQueries response: %s", err)
}
}
func fieldOptionsToFunctionalOpts(opt fieldOptions) []FieldOption {
// Convert json options into functional options.
var fos []FieldOption
switch opt.Type {
case FieldTypeSet:
fos = append(fos, OptFieldTypeSet(*opt.CacheType, *opt.CacheSize))
case FieldTypeInt:
min, max := pql.MinMax(0)
// ensure the provided bounds are valid
if opt.Max != nil && max.LessThan(*opt.Max) {
opt.Max = &max
}
if opt.Max == nil {
opt.Max = &max
}
if opt.Min != nil && min.GreaterThan(*opt.Min) {
opt.Min = &min
}
if opt.Min == nil {
opt.Min = &min
}
fos = append(fos, OptFieldTypeInt(opt.Min.ToInt64(0), opt.Max.ToInt64(0)))
case FieldTypeDecimal:
scale := int64(0)
if opt.Scale != nil {
scale = *opt.Scale
min, max := pql.MinMax(scale)
// ensure the provided bounds are valid
if opt.Max != nil && max.LessThan(*opt.Max) {
opt.Max = &max
}
if opt.Max == nil {
opt.Max = &max
}
if opt.Min != nil && min.GreaterThan(*opt.Min) {
opt.Min = &min
}
if opt.Min == nil {
opt.Min = &min
}
}
if opt.Min == nil {
min := pql.NewDecimal(int64(math.MinInt64), scale)
opt.Min = &min
}
if opt.Max == nil {
max := pql.NewDecimal(int64(math.MaxInt64), scale)
opt.Max = &max
}
var minmax []pql.Decimal
if opt.Min != nil {
minmax = []pql.Decimal{
*opt.Min,
}
if opt.Max != nil {
minmax = append(minmax, *opt.Max)
}
}
fos = append(fos, OptFieldTypeDecimal(scale, minmax...))
case FieldTypeTimestamp:
if opt.Epoch == nil {
epoch := DefaultEpoch
opt.Epoch = &epoch
}
fos = append(fos, OptFieldTypeTimestamp(opt.Epoch.UTC(), *opt.TimeUnit))
case FieldTypeTime:
if opt.TTL != nil {
fos = append(fos, OptFieldTypeTime(*opt.TimeQuantum, *opt.TTL, opt.NoStandardView))
} else {
fos = append(fos, OptFieldTypeTime(*opt.TimeQuantum, "0", opt.NoStandardView))
}
case FieldTypeMutex:
fos = append(fos, OptFieldTypeMutex(*opt.CacheType, *opt.CacheSize))
case FieldTypeBool:
fos = append(fos, OptFieldTypeBool())
}
if opt.Keys != nil {
if *opt.Keys {
fos = append(fos, OptFieldKeys())
}
}
if opt.ForeignIndex != nil {
fos = append(fos, OptFieldForeignIndex(*opt.ForeignIndex))
}
return fos
}
// handlePostField handles POST /field request.
func (h *Handler) handlePostField(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
indexName, ok := mux.Vars(r)["index"]
if !ok {
http.Error(w, "index name is required", http.StatusBadRequest)
return
}
fieldName, ok := mux.Vars(r)["field"]
if !ok {
http.Error(w, "field name is required", http.StatusBadRequest)
return
}
resp := successResponse{h: h, Name: fieldName}
// Decode request.
var req postFieldRequest
dec := json.NewDecoder(r.Body)
dec.DisallowUnknownFields()
err := dec.Decode(&req)
if err != nil && err != io.EOF {
resp.write(w, err)
return
}
// Validate field options.
if err := req.Options.validate(); err != nil {
resp.write(w, err)
return
}
fos := fieldOptionsToFunctionalOpts(req.Options)
field, err := h.api.CreateField(r.Context(), indexName, fieldName, fos...)
if _, ok = err.(BadRequestError); ok {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
if field != nil {
resp.CreatedAt = field.CreatedAt()
} else if _, ok = errors.Cause(err).(ConflictError); ok {
if field, _ = h.api.Field(r.Context(), indexName, fieldName); field != nil {
resp.CreatedAt = field.CreatedAt()
}
}
resp.write(w, err)
}
// handlePatchField handles updates to field schema at /index/{index}/field/{field}
func (h *Handler) handlePatchField(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
indexName, ok := mux.Vars(r)["index"]
if !ok {
http.Error(w, "index name is required", http.StatusBadRequest)
return
}
fieldName, ok := mux.Vars(r)["field"]
if !ok {
http.Error(w, "field name is required", http.StatusBadRequest)
return
}
resp := successResponse{h: h, Name: fieldName}
// Decode request.
var req FieldUpdate
dec := json.NewDecoder(r.Body)
dec.DisallowUnknownFields()
err := dec.Decode(&req)
if err != nil && err != io.EOF {
resp.write(w, err)
return
}
err = h.api.UpdateField(r.Context(), indexName, fieldName, req)
resp.write(w, err)
}
// handlePostIngestData handles JSON ingest data that may need key
// translation, for the entire cluster.
func (h *Handler) handlePostIngestData(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
indexName, ok := mux.Vars(r)["index"]
if !ok {
http.Error(w, "index name is required", http.StatusBadRequest)
return
}
qcx := h.api.Txf().NewQcx()
err := h.api.IngestOperations(r.Context(), qcx, indexName, r.Body)
if err != nil {
qcx.Abort()
switch e := err.(type) {
case RedirectError:
http.Redirect(w, r, e.HostPort+r.URL.Path, http.StatusPermanentRedirect)
return
}
}
err = qcx.Finish()
if err != nil {
http.Error(w, fmt.Sprintf("ingesting: %v", err), http.StatusInternalServerError)
return
}
resp := successResponse{h: h, Name: indexName}
resp.write(w, err)
}
type ingestSpec struct {
IndexName string `json:"index-name"`
IndexAction string `json:"index-action"`
FieldAction string `json:"field-action"`
PrimaryKeyType string `json:"primary-key-type"`
Fields []fieldSpec `json:"fields"`
}
type fieldSpec struct {
FieldName string `json:"field-name"`
FieldType string `json:"field-type"`
FieldOptions fieldOptionSpec `json:"field-options"`
}
type fieldOptionSpec struct {
EnforceMutualExclusion bool `json:"enforce-mutual-exclusion"`
CacheType *string `json:"cache-type"`
CacheSize *uint32 `json:"cache-size"`
Scale *int64 `json:"scale"`
Epoch *time.Time `json:"epoch"`
Unit *string `json:"unit"`
TimeQuantum *string `json:"time-quantum"`
TTL *string `json:"ttl"`
}
func fieldSpecToFieldOption(fSpec fieldSpec) fieldOptions {
opt := fieldOptions{}
// map fSpec type name to pilosa type name
// a string field could be a string set, mutex or time quantum
if fSpec.FieldOptions.TimeQuantum != nil {
opt.Type = "time"
} else if fSpec.FieldOptions.EnforceMutualExclusion {
opt.Type = "mutex"
} else {
opt.Type = "set"
}
// for other field types, there's a one-to-one mapping
if fSpec.FieldType != "string" && fSpec.FieldType != "id" {
opt.Type = fSpec.FieldType
}
if fSpec.FieldType == "string" {
var keys bool = true
opt.Keys = &keys
}
opt.CacheType = fSpec.FieldOptions.CacheType
opt.CacheSize = fSpec.FieldOptions.CacheSize
opt.Scale = fSpec.FieldOptions.Scale
opt.Epoch = fSpec.FieldOptions.Epoch
opt.TimeUnit = fSpec.FieldOptions.Unit
if fSpec.FieldOptions.TimeQuantum != nil {
timeQuantumVal := TimeQuantum(*fSpec.FieldOptions.TimeQuantum)
opt.TimeQuantum = &timeQuantumVal
}
opt.TTL = fSpec.FieldOptions.TTL
return opt
}
func (h *Handler) handleIngestSchema(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
resp := successResponse{h: h}
dec := json.NewDecoder(r.Body)
dec.DisallowUnknownFields()
schema := ingestSpec{}
// if a key in cleanupIndexes points to a 0-length slice, the
// entire index should be cleaned; otherwise, only the named
// fields within that index should be cleaned.
cleanupIndexes := map[string][]string{}
var schemaErr error
defer func() {
// we set schemaErr in any case where we need to do cleanup
if schemaErr != nil {
for index, fields := range cleanupIndexes {
if len(fields) == 0 {
err := h.api.DeleteIndex(r.Context(), index)
if err != nil {
h.logger.Printf("deleting index %q after schema err: %v", index, err)
}
} else {
for _, field := range fields {
err := h.api.DeleteField(r.Context(), index, field)
if err != nil {
h.logger.Printf("deleting field %q from index %q after schema err: %v", field, index, err)
}
}
}
}
}
}()
for dec.More() {
err := dec.Decode(&schema)
if err != nil {
resp.write(w, err)
return
}
index, fields, err := h.api.ApplyOneIngestSchema(r.Context(), &schema)
if err != nil {
switch e := err.(type) {
case RedirectError:
http.Redirect(w, r, e.HostPort+r.URL.Path, http.StatusPermanentRedirect)
return
default:
// if a previous schema created things, clean them up...
schemaErr = err
resp.write(w, err)
return
}
}
// we only have one slot to report these, sorry.
resp.Name = index.Name()
resp.CreatedAt = index.CreatedAt()
cleanupIndexes[index.Name()] = fields
}
// if we got here, we have a cleanupIndexes which we want to return,
// so we want to do that *instead* of the successResponse we'd be
// using otherwise (ironically, to indicate an error)
var mapBody []byte
var err error
if mapBody, err = json.Marshal(cleanupIndexes); err != nil {
resp.write(w, err)
}
if _, err = w.Write(mapBody); err != nil {
h.logger.Printf("error trying to write response: %v", err)
}
}
type postFieldRequest struct {
Options fieldOptions `json:"options"`
}
// fieldOptions tracks FieldOptions. It is made up of pointers to values,
// and used for input validation.
type fieldOptions struct {
Type string `json:"type,omitempty"`
CacheType *string `json:"cacheType,omitempty"`
CacheSize *uint32 `json:"cacheSize,omitempty"`
Min *pql.Decimal `json:"min,omitempty"`
Max *pql.Decimal `json:"max,omitempty"`
Scale *int64 `json:"scale,omitempty"`
Epoch *time.Time `json:"epoch,omitempty"`
TimeUnit *string `json:"timeUnit,omitempty"`
TimeQuantum *TimeQuantum `json:"timeQuantum,omitempty"`
Keys *bool `json:"keys,omitempty"`
NoStandardView bool `json:"noStandardView,omitempty"`
ForeignIndex *string `json:"foreignIndex,omitempty"`
TTL *string `json:"ttl,omitempty"`
Base *int64 `json:"base,omitempty"`
}
func (o *fieldOptions) validate() error {
// Pointers to default values.
defaultCacheType := DefaultCacheType
defaultCacheSize := uint32(DefaultCacheSize)
switch o.Type {
case FieldTypeSet, "":
// Because FieldTypeSet is the default, its arguments are
// not required. Instead, the defaults are applied whenever
// a value does not exist.
if o.Type == "" {
o.Type = FieldTypeSet
}
if o.CacheType == nil {
o.CacheType = &defaultCacheType
}
if o.CacheSize == nil {
o.CacheSize = &defaultCacheSize
}
if o.Min != nil {
return NewBadRequestError(errors.New("min does not apply to field type set"))
} else if o.Max != nil {
return NewBadRequestError(errors.New("max does not apply to field type set"))
} else if o.TimeQuantum != nil {
return NewBadRequestError(errors.New("timeQuantum does not apply to field type set"))
} else if o.TTL != nil {
return NewBadRequestError(errors.New("ttl does not apply to field type set"))
}
case FieldTypeInt:
if o.CacheType != nil {
return NewBadRequestError(errors.New("cacheType does not apply to field type int"))
} else if o.CacheSize != nil {
return NewBadRequestError(errors.New("cacheSize does not apply to field type int"))
} else if o.TimeQuantum != nil {
return NewBadRequestError(errors.New("timeQuantum does not apply to field type int"))
} else if o.TTL != nil {
return NewBadRequestError(errors.New("ttl does not apply to field type int"))
}
case FieldTypeDecimal:
if o.Scale == nil {
return NewBadRequestError(errors.New("decimal field requires a scale argument"))
} else if o.CacheType != nil {
return NewBadRequestError(errors.New("cacheType does not apply to field type int"))
} else if o.CacheSize != nil {
return NewBadRequestError(errors.New("cacheSize does not apply to field type int"))
} else if o.TimeQuantum != nil {
return NewBadRequestError(errors.New("timeQuantum does not apply to field type int"))
} else if o.TTL != nil {
return NewBadRequestError(errors.New("ttl does not apply to field type int"))
} else if o.ForeignIndex != nil && o.Type == FieldTypeDecimal {
return NewBadRequestError(errors.New("decimal field cannot be a foreign key"))
}
case FieldTypeTimestamp:
if o.TimeUnit == nil {
return NewBadRequestError(errors.New("timestamp field requires a timeUnit argument"))
} else if !IsValidTimeUnit(*o.TimeUnit) {
return NewBadRequestError(errors.New("invalid timeUnit argument"))
} else if o.CacheType != nil {
return NewBadRequestError(errors.New("cacheType does not apply to field type timestamp"))
} else if o.CacheSize != nil {
return NewBadRequestError(errors.New("cacheSize does not apply to field type timestamp"))
} else if o.TimeQuantum != nil {
return NewBadRequestError(errors.New("timeQuantum does not apply to field type timestamp"))
} else if o.TTL != nil {
return NewBadRequestError(errors.New("ttl does not apply to field type timestamp"))
} else if o.ForeignIndex != nil {
return NewBadRequestError(errors.New("timestamp field cannot be a foreign key"))
}
case FieldTypeTime:
if o.CacheType != nil {
return NewBadRequestError(errors.New("cacheType does not apply to field type time"))
} else if o.CacheSize != nil {
return NewBadRequestError(errors.New("cacheSize does not apply to field type time"))
} else if o.Min != nil {
return NewBadRequestError(errors.New("min does not apply to field type time"))
} else if o.Max != nil {
return NewBadRequestError(errors.New("max does not apply to field type time"))
} else if o.TimeQuantum == nil {
return NewBadRequestError(errors.New("timeQuantum is required for field type time"))
}
case FieldTypeMutex:
if o.CacheType == nil {
o.CacheType = &defaultCacheType
}
if o.CacheSize == nil {
o.CacheSize = &defaultCacheSize
}
if o.Min != nil {
return NewBadRequestError(errors.New("min does not apply to field type mutex"))
} else if o.Max != nil {
return NewBadRequestError(errors.New("max does not apply to field type mutex"))
} else if o.TimeQuantum != nil {
return NewBadRequestError(errors.New("timeQuantum does not apply to field type mutex"))
} else if o.TTL != nil {
return NewBadRequestError(errors.New("ttl does not apply to field type mutex"))
}
case FieldTypeBool:
if o.CacheType != nil {
return NewBadRequestError(errors.New("cacheType does not apply to field type bool"))
} else if o.CacheSize != nil {
return NewBadRequestError(errors.New("cacheSize does not apply to field type bool"))
} else if o.Min != nil {
return NewBadRequestError(errors.New("min does not apply to field type bool"))
} else if o.Max != nil {
return NewBadRequestError(errors.New("max does not apply to field type bool"))
} else if o.TimeQuantum != nil {
return NewBadRequestError(errors.New("timeQuantum does not apply to field type bool"))
} else if o.Keys != nil {
return NewBadRequestError(errors.New("keys does not apply to field type bool"))
} else if o.TTL != nil {
return NewBadRequestError(errors.New("ttl does not apply to field type bool"))
} else if o.ForeignIndex != nil {
return NewBadRequestError(errors.New("bool field cannot be a foreign key"))
}
default:
return errors.Errorf("invalid field type: %s", o.Type)
}
return nil
}
// handleDeleteField handles DELETE /field request.
func (h *Handler) handleDeleteField(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
indexName := mux.Vars(r)["index"]
fieldName := mux.Vars(r)["field"]
resp := successResponse{h: h}
err := h.api.DeleteField(r.Context(), indexName, fieldName)
resp.write(w, err)
}
func (h *Handler) handleGetTransactionList(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
trnsMap, err := h.api.Transactions(r.Context())
if err != nil {
switch errors.Cause(err) {
case ErrNodeNotPrimary:
http.Error(w, err.Error(), http.StatusBadRequest)
default:
http.Error(w, "problem getting transactions: "+err.Error(), http.StatusInternalServerError)
}
return
}
// Convert the map of transactions to a slice.
trnsList := make([]*Transaction, len(trnsMap))
var i int
for _, v := range trnsMap {
trnsList[i] = v
i++
}
// Sort the slice by createdAt.
sort.Slice(trnsList, func(i, j int) bool {
return trnsList[i].CreatedAt.Before(trnsList[j].CreatedAt)
})
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(trnsList); err != nil {
h.logger.Errorf("encoding GetTransactionList response: %s", err)
}
}
func (h *Handler) handleGetTransactions(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
trnsMap, err := h.api.Transactions(r.Context())
if err != nil {
switch errors.Cause(err) {
case ErrNodeNotPrimary:
http.Error(w, err.Error(), http.StatusBadRequest)
default:
http.Error(w, "problem getting transactions: "+err.Error(), http.StatusInternalServerError)
}
return
}
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(trnsMap); err != nil {
h.logger.Errorf("encoding GetTransactions response: %s", err)
}
}
type TransactionResponse struct {
Transaction *Transaction `json:"transaction,omitempty"`
Error string `json:"error,omitempty"`
}
func (h *Handler) doTransactionResponse(w http.ResponseWriter, err error, trns *Transaction) {
if err != nil {
switch errors.Cause(err) {
case ErrNodeNotPrimary, ErrTransactionExists:
w.WriteHeader(http.StatusBadRequest)
case ErrTransactionExclusive:
w.WriteHeader(http.StatusConflict)
case ErrTransactionNotFound:
w.WriteHeader(http.StatusNotFound)
default:
w.WriteHeader(http.StatusInternalServerError)
}
}
var errString string
if err != nil {
errString = err.Error()
}
w.Header().Set("Content-Type", "application/json")
err = json.NewEncoder(w).Encode(
TransactionResponse{Error: errString, Transaction: trns})
if err != nil {
h.logger.Errorf("encoding transaction response: %v", err)
}
}
func (h *Handler) handleGetTransaction(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
id := mux.Vars(r)["id"]
trns, err := h.api.GetTransaction(r.Context(), id, false)
h.doTransactionResponse(w, err, trns)
}
func (h *Handler) handlePostTransaction(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
reqTrns := &Transaction{}
if err := json.NewDecoder(r.Body).Decode(reqTrns); err != nil || reqTrns.Timeout == 0 {
if err == nil {
http.Error(w, "timeout is required and cannot be 0", http.StatusBadRequest)
} else {
http.Error(w, err.Error(), http.StatusBadRequest)
}
return
}
id, ok := mux.Vars(r)["id"]
if !ok {
id = reqTrns.ID
}
if primary := h.api.PrimaryNode(); h.api.NodeID() == primary.ID {
trns, err := h.api.StartTransaction(r.Context(), id, reqTrns.Timeout, reqTrns.Exclusive, false)
h.doTransactionResponse(w, err, trns)
return
} else {
http.Redirect(w, r, primary.URI.Normalize()+"/transaction/"+id, http.StatusSeeOther)
return
}
}
func (h *Handler) handlePostFinishTransaction(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
id := mux.Vars(r)["id"]
trns, err := h.api.FinishTransaction(r.Context(), id, false)
h.doTransactionResponse(w, err, trns)
}
// handleDeleteRemoteAvailableShard handles DELETE /field/{field}/available-shards/{shardID} request.
func (h *Handler) handleDeleteRemoteAvailableShard(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
indexName := mux.Vars(r)["index"]
fieldName := mux.Vars(r)["field"]
shardID, _ := strconv.ParseUint(mux.Vars(r)["shardID"], 10, 64)
resp := successResponse{h: h}
err := h.api.DeleteAvailableShard(r.Context(), indexName, fieldName, shardID)
resp.write(w, err)
}
// handleGetIndexShardSnapshot handles GET /internal/index/{index}/shard/{shard}/snapshot requests.
func (h *Handler) handleGetIndexShardSnapshot(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
shard, err := strconv.ParseUint(mux.Vars(r)["shard"], 10, 64)
if err != nil {
http.Error(w, "Invalid shard parameter", http.StatusBadRequest)
return
}
rc, err := h.api.IndexShardSnapshot(r.Context(), indexName, shard)
if err != nil {
switch errors.Cause(err) {
case ErrIndexNotFound:
http.Error(w, err.Error(), http.StatusNotFound)
default:
http.Error(w, err.Error(), http.StatusInternalServerError)
}
return
}
defer rc.Close()
// Copy data to response body.
if _, err := io.CopyBuffer(&passthroughWriter{w}, rc, make([]byte, rbf.PageSize)); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
}
// readQueryRequest parses an query parameters from r.
func (h *Handler) readQueryRequest(r *http.Request) (*QueryRequest, error) {
switch r.Header.Get("Content-Type") {
case "application/x-protobuf":
return h.readProtobufQueryRequest(r)
default:
return h.readURLQueryRequest(r)
}
}
// passthroughWriter is used to remove non-Writer interfaces from an io.Writer.
// For example, a writer that implements io.ReaderFrom can change io.Copy() behavior.
type passthroughWriter struct {
w io.Writer
}
func (w *passthroughWriter) Write(p []byte) (int, error) {
return w.w.Write(p)
}
// readProtobufQueryRequest parses query parameters in protobuf from r.
func (h *Handler) readProtobufQueryRequest(r *http.Request) (*QueryRequest, error) {
// Slurp the body.
body, err := readBody(r)
if err != nil {
return nil, errors.Wrap(err, "reading")
}
qreq := &QueryRequest{}
err = h.serializer.Unmarshal(body, qreq)
if err != nil {
return nil, errors.Wrap(err, "unmarshalling query request")
}
return qreq, nil
}
// readURLQueryRequest parses query parameters from URL parameters from r.
func (h *Handler) readURLQueryRequest(r *http.Request) (*QueryRequest, error) {
q := r.URL.Query()
// Parse query string.
buf, err := readBody(r)
if err != nil {
return nil, errors.Wrap(err, "reading")
}
query := string(buf)
// Parse list of shards.
shards, err := parseUint64Slice(q.Get("shards"))
if err != nil {
return nil, errors.New("invalid shard argument")
}
// Optional profiling
profile := false
profileString := q.Get("profile")
if profileString != "" {
profile, err = strconv.ParseBool(q.Get("profile"))
if err != nil {
return nil, fmt.Errorf("invalid profile argument: '%s' (should be true/false)", profileString)
}
}
return &QueryRequest{
Query: query,
Shards: shards,
Profile: profile,
}, nil
}
// writeQueryResponse writes the response from the executor to w.
func (h *Handler) writeQueryResponse(w http.ResponseWriter, r *http.Request, resp *QueryResponse) error {
if !validHeaderAcceptJSON(r.Header) {
w.Header().Set("Content-Type", "application/protobuf")
return h.writeProtobufQueryResponse(w, resp, headerAcceptRoaringRow(r.Header))
}
w.Header().Set("Content-Type", "application/json")
return h.writeJSONQueryResponse(w, resp)
}
// writeProtobufQueryResponse writes the response from the executor to w as protobuf.
func (h *Handler) writeProtobufQueryResponse(w io.Writer, resp *QueryResponse, writeRoaring bool) error {
serializer := h.serializer
if writeRoaring {
serializer = h.roaringSerializer
}
if buf, err := serializer.Marshal(resp); err != nil {
return errors.Wrap(err, "marshalling")
} else if _, err := w.Write(buf); err != nil {
return errors.Wrap(err, "writing")
}
return nil
}
// writeJSONQueryResponse writes the response from the executor to w as JSON.
func (h *Handler) writeJSONQueryResponse(w io.Writer, resp *QueryResponse) error {
return json.NewEncoder(w).Encode(resp)
}
func validateProtobufHeader(r *http.Request) (error string, code int) {
if r.Header.Get("Content-Type") != "application/x-protobuf" {
return "Unsupported media type", http.StatusUnsupportedMediaType
}
if r.Header.Get("Accept") != "application/x-protobuf" {
return "Not acceptable", http.StatusNotAcceptable
}
return
}
// handleGetInternalDebugRBFJSON handles /internal/debug/rbf requests.
func (h *Handler) handleGetInternalDebugRBFJSON(w http.ResponseWriter, r *http.Request) {
buf, err := json.MarshalIndent(h.api.RBFDebugInfo(), "", " ")
if err != nil {
http.Error(w, "marshal json: "+err.Error(), http.StatusInternalServerError)
return
}
w.Header().Set("Content-Type", "application/json")
w.Write(buf)
}
// handleGetMetricsJSON handles /metrics.json requests, translating text metrics results to more consumable JSON.
func (h *Handler) handleGetMetricsJSON(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
w.Header().Set("Content-Type", "application/json")
metrics := make(map[string][]*prom2json.Family)
transport := http.DefaultTransport.(*http.Transport).Clone()
for _, node := range h.api.Hosts(r.Context()) {
metricsURI := node.URI.String() + "/metrics"
// The buffer size of 60 is performance controlling, but we
// haven't studied what the optimal setting is. It was
// earlier set to this value to capture all output from
// prom2json at once. The output got larger recently, so
// now we handle unlimited size output using a goroutine.
mfChan := make(chan *dto.MetricFamily, 60)
errChan := make(chan error)
go func() {
err := prom2json.FetchMetricFamilies(metricsURI, mfChan, transport)
errChan <- err
}()
nodeMetrics := []*prom2json.Family{}
for mf := range mfChan {
nodeMetrics = append(nodeMetrics, prom2json.NewFamily(mf))
}
err := <-errChan
if err != nil {
http.Error(w, "fetching metrics: "+err.Error(), http.StatusInternalServerError)
return
}
metrics[node.ID] = nodeMetrics
}
err := json.NewEncoder(w).Encode(metrics)
if err != nil {
h.logger.Errorf("json write error: %s", err)
}
}
// handleGetExport handles /export requests.
func (h *Handler) handleGetExport(w http.ResponseWriter, r *http.Request) {
switch r.Header.Get("Accept") {
case "text/csv":
h.handleGetExportCSV(w, r)
default:
http.Error(w, "Not acceptable", http.StatusNotAcceptable)
}
}
func (h *Handler) handleGetExportCSV(w http.ResponseWriter, r *http.Request) {
// Parse query parameters.
q := r.URL.Query()
index, field := q.Get("index"), q.Get("field")
shard, err := strconv.ParseUint(q.Get("shard"), 10, 64)
if err != nil {
http.Error(w, "invalid shard", http.StatusBadRequest)
return
}
if err = h.api.ExportCSV(r.Context(), index, field, shard, w); err != nil {
switch errors.Cause(err) {
case ErrFragmentNotFound:
break
case ErrClusterDoesNotOwnShard:
http.Error(w, err.Error(), http.StatusPreconditionFailed)
default:
http.Error(w, err.Error(), http.StatusInternalServerError)
}
return
}
}
// handleGetFragmentNodes handles /internal/fragment/nodes requests.
func (h *Handler) handleGetFragmentNodes(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
q := r.URL.Query()
index := q.Get("index")
// Read shard parameter.
shard, err := strconv.ParseUint(q.Get("shard"), 10, 64)
if err != nil {
http.Error(w, "shard should be an unsigned integer", http.StatusBadRequest)
return
}
// Retrieve fragment owner nodes.
nodes, err := h.api.ShardNodes(r.Context(), index, shard)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Write to response.
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(nodes); err != nil {
h.logger.Errorf("json write error: %s", err)
}
}
// handleGetPartitionNodes handles /internal/partition/nodes requests.
func (h *Handler) handleGetPartitionNodes(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
q := r.URL.Query()
// Read partition parameter.
partitionID, err := strconv.ParseInt(q.Get("partition"), 10, 64)
if err != nil {
http.Error(w, "shard should be an unsigned integer", http.StatusBadRequest)
return
}
// Retrieve fragment owner nodes.
nodes, err := h.api.PartitionNodes(r.Context(), int(partitionID))
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Write to response.
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(nodes); err != nil {
h.logger.Errorf("json write error: %s", err)
}
}
// handleGetNodes handles /internal/nodes requests.
func (h *Handler) handleGetNodes(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
// Retrieve all nodes.
nodes := h.api.Hosts(r.Context())
// Write to response.
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(nodes); err != nil {
h.logger.Errorf("json write error: %s", err)
}
}
// handleGetFragmentBlockData handles GET /internal/fragment/block/data requests.
func (h *Handler) handleGetFragmentBlockData(w http.ResponseWriter, r *http.Request) {
buf, err := h.api.FragmentBlockData(r.Context(), r.Body)
if err != nil {
if _, ok := err.(BadRequestError); ok {
http.Error(w, err.Error(), http.StatusBadRequest)
} else if errors.Cause(err) == ErrFragmentNotFound {
http.Error(w, err.Error(), http.StatusNotFound)
} else {
http.Error(w, err.Error(), http.StatusInternalServerError)
}
return
}
// Write response.
w.Header().Set("Content-Type", "application/protobuf")
w.Header().Set("Content-Length", strconv.Itoa(len(buf)))
_, err = w.Write(buf)
if err != nil {
h.logger.Errorf("writing fragment/block/data response: %v", err)
}
}
// handleGetFragmentBlocks handles GET /internal/fragment/blocks requests.
func (h *Handler) handleGetFragmentBlocks(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
// Read shard parameter.
q := r.URL.Query()
shard, err := strconv.ParseUint(q.Get("shard"), 10, 64)
if err != nil {
http.Error(w, "shard required", http.StatusBadRequest)
return
}
blocks, err := h.api.FragmentBlocks(r.Context(), q.Get("index"), q.Get("field"), q.Get("view"), shard)
if err != nil {
if errors.Cause(err) == ErrFragmentNotFound {
http.Error(w, err.Error(), http.StatusNotFound)
} else {
http.Error(w, err.Error(), http.StatusInternalServerError)
}
return
}
// Encode response.
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(getFragmentBlocksResponse{
Blocks: blocks,
}); err != nil {
h.logger.Errorf("block response encoding error: %s", err)
}
}
type getFragmentBlocksResponse struct {
Blocks []FragmentBlock `json:"blocks"`
}
// handleGetFragmentData handles GET /internal/fragment/data requests.
func (h *Handler) handleGetFragmentData(w http.ResponseWriter, r *http.Request) {
// Read shard parameter.
q := r.URL.Query()
shard, err := strconv.ParseUint(q.Get("shard"), 10, 64)
if err != nil {
http.Error(w, "shard required", http.StatusBadRequest)
return
}
// Retrieve fragment data from holder.
f, err := h.api.FragmentData(r.Context(), q.Get("index"), q.Get("field"), q.Get("view"), shard)
if err != nil {
http.Error(w, err.Error(), http.StatusNotFound)
return
}
// Stream fragment to response body.
if _, err := f.WriteTo(w); err != nil {
h.logger.Errorf("error streaming fragment data: %s", err)
}
}
// handleGetTranslateData handles GET /internal/translate/data requests.
func (h *Handler) handleGetTranslateData(w http.ResponseWriter, r *http.Request) {
q := r.URL.Query()
// Perform field translation copy, if field specified.
if fieldName := q.Get("field"); fieldName != "" {
// Retrieve field data from holder.
p, err := h.api.FieldTranslateData(r.Context(), q.Get("index"), fieldName)
if err != nil {
http.Error(w, err.Error(), http.StatusNotFound)
return
}
// Stream translate data to response body.
if _, err := p.WriteTo(w); err != nil {
h.logger.Errorf("error streaming translation data: %s", err)
}
return
}
// Otherwise read partition parameter for index translation copy.
partition, err := strconv.ParseUint(q.Get("partition"), 10, 32)
if err != nil {
http.Error(w, "partition or field required", http.StatusBadRequest)
return
}
// Retrieve partition data from holder.
p, err := h.api.TranslateData(r.Context(), q.Get("index"), int(partition))
if redir, ok := err.(RedirectError); ok {
newURL := *r.URL
newURL.Host = redir.HostPort
http.Redirect(w, r, newURL.String(), http.StatusSeeOther)
return
}
if err != nil {
http.Error(w, err.Error(), http.StatusNotFound)
return
}
// Stream translate partition to response body.
if _, err := p.WriteTo(w); err != nil {
h.logger.Errorf("error streaming translation data: %s", err)
}
}
// handleGetVersion handles /version requests.
func (h *Handler) handleGetVersion(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
w.Header().Set("Content-Type", "application/json")
err := json.NewEncoder(w).Encode(struct {
Version string `json:"version"`
}{
Version: h.api.Version(),
})
if err != nil {
h.logger.Errorf("write version response error: %s", err)
}
}
// QueryResult types.
const (
QueryResultTypeRow uint32 = iota
QueryResultTypePairs
QueryResultTypeUint64
)
// parseUint64Slice returns a slice of uint64s from a comma-delimited string.
func parseUint64Slice(s string) ([]uint64, error) {
var a []uint64
for _, str := range strings.Split(s, ",") {
// Ignore blanks.
if str == "" {
continue
}
// Parse number.
num, err := strconv.ParseUint(str, 10, 64)
if err != nil {
return nil, errors.Wrap(err, "parsing int")
}
a = append(a, num)
}
return a, nil
}
func (h *Handler) handleRecalculateCaches(w http.ResponseWriter, r *http.Request) {
err := h.api.RecalculateCaches(r.Context())
if err != nil {
http.Error(w, "recalculating caches: "+err.Error(), http.StatusInternalServerError)
return
}
w.WriteHeader(http.StatusNoContent)
}
func (h *Handler) handlePostClusterMessage(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
// Verify that request is only communicating over protobufs.
if r.Header.Get("Content-Type") != "application/x-protobuf" {
http.Error(w, "Unsupported media type", http.StatusUnsupportedMediaType)
return
}
err := h.api.ClusterMessage(r.Context(), r.Body)
if err != nil {
switch err := err.(type) {
case MessageProcessingError:
http.Error(w, err.Error(), http.StatusInternalServerError)
default:
http.Error(w, err.Error(), http.StatusBadRequest)
}
return
}
w.Header().Set("Content-Type", "application/json")
if err := json.NewEncoder(w).Encode(defaultClusterMessageResponse{}); err != nil {
h.logger.Errorf("response encoding error: %s", err)
}
}
type defaultClusterMessageResponse struct{}
func (h *Handler) handlePostTranslateData(w http.ResponseWriter, r *http.Request) {
// Parse offsets for all indexes and fields from POST body.
offsets := make(TranslateOffsetMap)
if err := json.NewDecoder(r.Body).Decode(&offsets); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Stream all translation data.
rd, err := h.api.GetTranslateEntryReader(r.Context(), offsets)
if errors.Cause(err) == ErrNotImplemented {
http.Error(w, err.Error(), http.StatusNotImplemented)
return
} else if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
defer rd.Close()
// Flush header so client can continue.
w.WriteHeader(http.StatusOK)
w.(http.Flusher).Flush()
// Copy from reader to client until store or client disconnect.
enc := json.NewEncoder(w)
for {
// Read from store.
var entry TranslateEntry
if err := rd.ReadEntry(&entry); err == io.EOF {
return
} else if err != nil {
h.logger.Errorf("http: translate store read error: %s", err)
return
}
// Write to response & flush.
if err := enc.Encode(&entry); err != nil {
return
}
w.(http.Flusher).Flush()
}
}
type queryValidationSpec struct {
required []string
args map[string]struct{}
}
func queryValidationSpecRequired(requiredArgs ...string) *queryValidationSpec {
args := map[string]struct{}{}
for _, arg := range requiredArgs {
args[arg] = struct{}{}
}
return &queryValidationSpec{
required: requiredArgs,
args: args,
}
}
func (s *queryValidationSpec) Optional(args ...string) *queryValidationSpec {
for _, arg := range args {
s.args[arg] = struct{}{}
}
return s
}
func (s queryValidationSpec) validate(query url.Values) error {
for _, req := range s.required {
if query.Get(req) == "" {
return errors.Errorf("%s is required", req)
}
}
for k := range query {
if _, ok := s.args[k]; !ok {
return errors.Errorf("%s is not a valid argument", k)
}
}
return nil
}
type ClientOption func(client *http.Client, dialer *net.Dialer) *http.Client
func ClientResponseHeaderTimeoutOption(dur time.Duration) ClientOption {
return func(client *http.Client, dialer *net.Dialer) *http.Client {
client.Transport.(*http.Transport).ResponseHeaderTimeout = dur
return client
}
}
func ClientDialTimeoutOption(dur time.Duration) ClientOption {
return func(client *http.Client, dialer *net.Dialer) *http.Client {
dialer.Timeout = dur
return client
}
}
func GetHTTPClient(t *tls.Config, opts ...ClientOption) *http.Client {
dialer := &net.Dialer{
Timeout: 30 * time.Second,
KeepAlive: 15 * time.Second,
DualStack: true,
}
transport := &http.Transport{
Proxy: http.ProxyFromEnvironment,
DialContext: dialer.DialContext,
MaxIdleConns: 1000,
MaxIdleConnsPerHost: 200,
IdleConnTimeout: 20 * time.Second,
TLSHandshakeTimeout: 10 * time.Second,
ExpectContinueTimeout: 1 * time.Second,
}
if t != nil {
transport.TLSClientConfig = t
}
client := &http.Client{Transport: transport}
for _, opt := range opts {
client = opt(client, dialer)
}
return client
}
// handlePostImportAtomicRecord handles /import-atomic-record requests
func (h *Handler) handlePostImportAtomicRecord(w http.ResponseWriter, r *http.Request) {
// Verify that request is only communicating over protobufs.
if error, code := validateProtobufHeader(r); error != "" {
http.Error(w, error, code)
return
}
// Read entire body.
body, err := readBody(r)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Unmarshal request based on field type.
q := r.URL.Query()
sLoss := q.Get("simPowerLossAfter")
loss := 0
if sLoss != "" {
l, err := strconv.ParseInt(sLoss, 10, 64)
loss = int(l)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
}
}
opt := func(o *ImportOptions) error {
o.SimPowerLossAfter = loss
return nil
}
req := &AtomicRecord{}
if err := h.serializer.Unmarshal(body, req); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
qcx := h.api.Txf().NewQcx()
err = h.api.ImportAtomicRecord(r.Context(), qcx, req, opt)
if err == nil {
err = qcx.Finish()
} else {
qcx.Abort()
}
if err != nil {
switch errors.Cause(err) {
case ErrClusterDoesNotOwnShard, ErrPreconditionFailed:
http.Error(w, err.Error(), http.StatusPreconditionFailed)
case ErrBSIGroupValueTooLow, ErrBSIGroupValueTooHigh, ErrDecimalOutOfRange:
http.Error(w, err.Error(), http.StatusBadRequest)
default:
http.Error(w, err.Error(), http.StatusInternalServerError)
}
return
}
// Write response.
_, err = w.Write(importOk)
if err != nil {
h.logger.Errorf("writing import response: %v", err)
}
}
// handlePostImport handles /import requests.
func (h *Handler) handlePostImport(w http.ResponseWriter, r *http.Request) {
// Verify that request is only communicating over protobufs.
if err, code := validateProtobufHeader(r); err != "" {
http.Error(w, err, code)
return
}
// Get index and field type to determine how to handle the
// import data.
indexName := mux.Vars(r)["index"]
index, err := h.api.Index(r.Context(), indexName)
if err != nil {
if errors.Cause(err) == ErrIndexNotFound {
http.Error(w, err.Error(), http.StatusNotFound)
} else {
http.Error(w, err.Error(), http.StatusInternalServerError)
}
return
}
fieldName := mux.Vars(r)["field"]
field := index.Field(fieldName)
if field == nil {
http.Error(w, ErrFieldNotFound.Error(), http.StatusNotFound)
return
}
// If the clear flag is true, treat the import as clear bits.
q := r.URL.Query()
doClear := q.Get("clear") == "true"
doIgnoreKeyCheck := q.Get("ignoreKeyCheck") == "true"
opts := []ImportOption{
OptImportOptionsClear(doClear),
OptImportOptionsIgnoreKeyCheck(doIgnoreKeyCheck),
}
// Read entire body.
body, err := readBody(r)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Unmarshal request based on field type.
if field.Type() == FieldTypeInt || field.Type() == FieldTypeDecimal || field.Type() == FieldTypeTimestamp {
// Field type: Int
// Marshal into request object.
req := &ImportValueRequest{}
if err := h.serializer.Unmarshal(body, req); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
qcx := h.api.Txf().NewQcx()
defer qcx.Abort()
if err := h.api.ImportValue(r.Context(), qcx, req, opts...); err != nil {
switch errors.Cause(err) {
case ErrClusterDoesNotOwnShard, ErrPreconditionFailed:
http.Error(w, err.Error(), http.StatusPreconditionFailed)
case ErrBSIGroupValueTooLow, ErrBSIGroupValueTooHigh, ErrDecimalOutOfRange:
http.Error(w, err.Error(), http.StatusBadRequest)
default:
http.Error(w, err.Error(), http.StatusInternalServerError)
}
return
}
err := qcx.Finish()
if err != nil {
http.Error(w, fmt.Sprintf("error in qcx.Finish(): '%v'", err.Error()), http.StatusInternalServerError)
return
}
} else {
// Field type: set, time, mutex
// Marshal into request object.
req := &ImportRequest{}
if err := h.serializer.Unmarshal(body, req); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
qcx := h.api.Txf().NewQcx()
defer qcx.Abort()
if err := h.api.Import(r.Context(), qcx, req, opts...); err != nil {
switch errors.Cause(err) {
case ErrClusterDoesNotOwnShard, ErrPreconditionFailed:
http.Error(w, err.Error(), http.StatusPreconditionFailed)
case ErrBSIGroupValueTooLow, ErrBSIGroupValueTooHigh, ErrDecimalOutOfRange:
http.Error(w, err.Error(), http.StatusBadRequest)
default:
http.Error(w, err.Error(), http.StatusInternalServerError)
}
return
}
err := qcx.Finish()
if err != nil {
http.Error(w, fmt.Sprintf("error in qcx.Finish() on set,time,mutex: '%v'", err.Error()), http.StatusInternalServerError)
return
}
}
// Write response.
_, err = w.Write(importOk)
if err != nil {
h.logger.Errorf("writing import response: %v", err)
}
}
// handleGetMutexCheck handles /mutex-check requests.
func (h *Handler) handleGetMutexCheck(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
// Get index and field type to determine how to handle the
// import data.
indexName, fieldName := mux.Vars(r)["index"], mux.Vars(r)["field"]
q := r.URL.Query()
limit := 0
details := q.Get("details") == "true"
limitStr := q.Get("limit")
if limitStr != "" {
var err error
limit, err = strconv.Atoi(limitStr)
if err != nil {
http.Error(w, "limit must be numeric", http.StatusBadRequest)
}
}
qcx := h.api.Txf().NewQcx()
defer qcx.Abort()
out, err := h.api.MutexCheck(r.Context(), qcx, indexName, fieldName, details, limit)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
outBytes, err := json.Marshal(out)
if err != nil {
http.Error(w, fmt.Sprintf("marshalling response: %v", err), http.StatusInternalServerError)
}
_, err = w.Write(outBytes)
if err != nil {
h.logger.Errorf("writing mutex-check response: %v", err)
}
}
// handleInternalGetMutexCheck handles internal (non-forwarding )/mutex-check requests.
func (h *Handler) handleInternalGetMutexCheck(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
// Get index and field type to determine how to handle the
// import data.
indexName, fieldName := mux.Vars(r)["index"], mux.Vars(r)["field"]
q := r.URL.Query()
limit := 0
details := q.Get("details") == "true"
limitStr := q.Get("limit")
if limitStr != "" {
var err error
limit, err = strconv.Atoi(limitStr)
if err != nil {
http.Error(w, "limit must be numeric", http.StatusBadRequest)
}
}
qcx := h.api.Txf().NewQcx()
defer qcx.Abort()
out, err := h.api.MutexCheckNode(r.Context(), qcx, indexName, fieldName, details, limit)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
outBytes, err := json.Marshal(out)
if err != nil {
http.Error(w, fmt.Sprintf("marshalling response: %v", err), http.StatusInternalServerError)
}
_, err = w.Write(outBytes)
if err != nil {
h.logger.Errorf("writing mutex-check response: %v", err)
}
}
// handlePostImportRoaring
func (h *Handler) handlePostImportRoaring(w http.ResponseWriter, r *http.Request) {
// Verify that request is only communicating over protobufs.
if error, code := validateProtobufHeader(r); error != "" {
http.Error(w, error, code)
return
}
// Get index and field type to determine how to handle the
// import data.
indexName := mux.Vars(r)["index"]
fieldName := mux.Vars(r)["field"]
q := r.URL.Query()
remoteStr := q.Get("remote")
var remote bool
if remoteStr == "true" {
remote = true
}
ctx := r.Context()
// Read entire body.
span, _ := tracing.StartSpanFromContext(ctx, "io.ReadAll-Body")
body, err := readBody(r)
span.LogKV("bodySize", len(body))
span.Finish()
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
req := &ImportRoaringRequest{}
span, _ = tracing.StartSpanFromContext(ctx, "Unmarshal")
err = h.serializer.Unmarshal(body, req)
span.Finish()
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
urlVars := mux.Vars(r)
shard, err := strconv.ParseUint(urlVars["shard"], 10, 64)
if err != nil {
http.Error(w, "shard should be an unsigned integer", http.StatusBadRequest)
return
}
resp := &ImportResponse{}
// TODO give meaningful stats for import
err = h.api.ImportRoaring(ctx, indexName, fieldName, shard, remote, req)
if err != nil {
resp.Err = err.Error()
if _, ok := err.(BadRequestError); ok {
w.WriteHeader(http.StatusBadRequest)
} else if _, ok := err.(NotFoundError); ok {
w.WriteHeader(http.StatusNotFound)
} else if _, ok := err.(PreconditionFailedError); ok {
w.WriteHeader(http.StatusPreconditionFailed)
} else {
w.WriteHeader(http.StatusInternalServerError)
}
}
// Marshal response object.
buf, err := h.serializer.Marshal(resp)
if err != nil {
http.Error(w, fmt.Sprintf("marshal import-roaring response: %v", err), http.StatusInternalServerError)
return
}
// Write response.
_, err = w.Write(buf)
if err != nil {
h.logger.Errorf("writing import-roaring response: %v", err)
return
}
}
// handlePostShardImportRoaring takes data for multiple fields for a
// particular shard and imports it all in a single transaction. It was
// developed in the post-RBF world and should probably ultimately
// replace most of the other import endpoints.
func (h *Handler) handlePostShardImportRoaring(w http.ResponseWriter, r *http.Request) {
// Verify that request is only communicating over protobufs.
if error, code := validateProtobufHeader(r); error != "" {
http.Error(w, error, code)
return
}
// Get index and field type to determine how to handle the
// import data.
indexName := mux.Vars(r)["index"]
ctx := r.Context()
// Read entire body.
span, _ := tracing.StartSpanFromContext(ctx, "io.ReadAll-Body")
body, err := readBody(r)
span.LogKV("bodySize", len(body))
span.Finish()
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
req := &ImportRoaringShardRequest{}
span, _ = tracing.StartSpanFromContext(ctx, "Unmarshal")
err = h.serializer.Unmarshal(body, req)
span.Finish()
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
urlVars := mux.Vars(r)
shard, err := strconv.ParseUint(urlVars["shard"], 10, 64)
if err != nil {
http.Error(w, "shard should be an unsigned integer", http.StatusBadRequest)
return
}
resp := &ImportResponse{}
// TODO give meaningful stats for import
err = h.api.ImportRoaringShard(ctx, indexName, shard, req)
if err != nil {
resp.Err = err.Error()
if errors.Is(err, ErrIndexNotFound) {
w.WriteHeader(http.StatusNotFound)
} else if errors.As(err, &BadRequestError{}) {
w.WriteHeader(http.StatusBadRequest)
} else if _, ok := errors.Cause(err).(NotFoundError); ok {
w.WriteHeader(http.StatusNotFound)
} else if errors.As(err, &PreconditionFailedError{}) {
w.WriteHeader(http.StatusPreconditionFailed)
} else {
w.WriteHeader(http.StatusInternalServerError)
}
}
// Marshal response object.
buf, err := h.serializer.Marshal(resp)
if err != nil {
http.Error(w, fmt.Sprintf("marshal shard-import-roaring response: %v", err), http.StatusInternalServerError)
return
}
// Write response.
_, err = w.Write(buf)
if err != nil {
h.logger.Errorf("writing shard-import-roaring response: %v", err)
return
}
}
// handlePostIngestNode is the internal endpoint taking already-translated
// ingest operations, sorted by shard, for a single node.
func (h *Handler) handlePostIngestNode(w http.ResponseWriter, r *http.Request) {
// Verify that request is only communicating over protobufs.
if error, code := validateProtobufHeader(r); error != "" {
http.Error(w, error, code)
return
}
ctx := r.Context()
// Read entire body.
span, _ := tracing.StartSpanFromContext(ctx, "io.ReadAll-Body")
body, err := readBody(r)
span.LogKV("bodySize", len(body))
span.Finish()
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
req := &ingest.ShardedRequest{}
span, _ = tracing.StartSpanFromContext(ctx, "Unmarshal")
err = h.serializer.Unmarshal(body, req)
span.Finish()
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
urlVars := mux.Vars(r)
indexName := urlVars["index"]
qcx := h.api.Txf().NewQcx()
err = h.api.IngestNodeOperations(r.Context(), qcx, indexName, req)
if err == nil {
err = qcx.Finish()
if err != nil {
http.Error(w, fmt.Sprintf("ingesting: %v", err), http.StatusInternalServerError)
}
} else {
http.Error(w, fmt.Sprintf("ingesting: %v", err), http.StatusInternalServerError)
qcx.Abort()
}
}
func (h *Handler) handlePostTranslateKeys(w http.ResponseWriter, r *http.Request) {
// Verify that request is only communicating over protobufs.
if r.Header.Get("Content-Type") != "application/x-protobuf" {
http.Error(w, "Unsupported media type", http.StatusUnsupportedMediaType)
return
} else if r.Header.Get("Accept") != "application/x-protobuf" {
http.Error(w, "Not acceptable", http.StatusNotAcceptable)
return
}
buf, err := h.api.TranslateKeys(r.Context(), r.Body)
switch errors.Cause(err) {
case nil:
// Write response.
if _, err = w.Write(buf); err != nil {
h.logger.Errorf("writing translate keys response: %v", err)
}
case ErrTranslatingKeyNotFound:
http.Error(w, fmt.Sprintf("translate keys: %v", err), http.StatusNotFound)
case ErrTranslateStoreReadOnly:
http.Error(w, fmt.Sprintf("translate keys: %v", err), http.StatusPreconditionFailed)
default:
http.Error(w, fmt.Sprintf("translate keys: %v", err), http.StatusInternalServerError)
}
}
func (h *Handler) handlePostTranslateIDs(w http.ResponseWriter, r *http.Request) {
// Verify that request is only communicating over protobufs.
if r.Header.Get("Content-Type") != "application/x-protobuf" {
http.Error(w, "Unsupported media type", http.StatusUnsupportedMediaType)
return
} else if r.Header.Get("Accept") != "application/x-protobuf" {
http.Error(w, "Not acceptable", http.StatusNotAcceptable)
return
}
buf, err := h.api.TranslateIDs(r.Context(), r.Body)
if err != nil {
http.Error(w, fmt.Sprintf("translate ids: %v", err), http.StatusInternalServerError)
return
}
// Write response.
_, err = w.Write(buf)
if err != nil {
h.logger.Errorf("writing translate keys response: %v", err)
}
}
// Read entire request body.
func readBody(r *http.Request) ([]byte, error) {
var contentLength int64 = bytes.MinRead
if r.ContentLength > 0 {
contentLength = r.ContentLength
}
buf := bytes.NewBuffer(make([]byte, 0, 1+contentLength))
if _, err := buf.ReadFrom(r.Body); err != nil {
return nil, err
}
return buf.Bytes(), nil
}
func (h *Handler) handlePostTranslateFieldDB(w http.ResponseWriter, r *http.Request) {
indexName, ok := mux.Vars(r)["index"]
if !ok {
http.Error(w, "index name is required", http.StatusBadRequest)
return
}
fieldName, ok := mux.Vars(r)["field"]
if !ok {
http.Error(w, "field name is required", http.StatusBadRequest)
return
}
bd, err := readBody(r)
if err != nil {
http.Error(w, "failed to read body", http.StatusBadRequest)
return
}
br := bytes.NewReader(bd)
err = h.api.TranslateFieldDB(r.Context(), indexName, fieldName, br)
resp := successResponse{h: h, Name: fieldName}
resp.check(err)
resp.write(w, err)
}
func (h *Handler) handlePostTranslateIndexDB(w http.ResponseWriter, r *http.Request) {
indexName, ok := mux.Vars(r)["index"]
if !ok {
http.Error(w, "index name is required", http.StatusBadRequest)
return
}
partitionArg, ok := mux.Vars(r)["partition"]
if !ok {
http.Error(w, "partition is required", http.StatusBadRequest)
return
}
partition, err := strconv.ParseUint(partitionArg, 10, 64)
if err != nil {
http.Error(w, "bad partition", http.StatusBadRequest)
return
}
bd, err := readBody(r)
if err != nil {
http.Error(w, "failed to read body", http.StatusBadRequest)
return
}
br := bytes.NewReader(bd)
err = h.api.TranslateIndexDB(r.Context(), indexName, int(partition), br)
resp := successResponse{h: h, Name: indexName}
resp.check(err)
resp.write(w, err)
}
func (h *Handler) handleFindOrCreateKeys(w http.ResponseWriter, r *http.Request, requireField bool, create bool) {
// Verify input and output types
if r.Header.Get("Content-Type") != "application/json" {
http.Error(w, "Unsupported media type", http.StatusUnsupportedMediaType)
return
}
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "Not acceptable", http.StatusNotAcceptable)
return
}
var indexName, fieldName string
var keys []string
err := func() error {
var ok bool
indexName, ok = mux.Vars(r)["index"]
if !ok {
return errors.New("index name is required")
}
if requireField {
fieldName, ok = mux.Vars(r)["field"]
if !ok {
return errors.New("field name is required")
}
}
bd, err := readBody(r)
if err != nil {
return fmt.Errorf("failed to read body: %v", err)
}
err = json.Unmarshal(bd, &keys)
if err != nil {
return fmt.Errorf("failed to decode request: %v", err)
}
return nil
}()
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
}
var translations map[string]uint64
switch {
case requireField && create:
translations, err = h.api.CreateFieldKeys(r.Context(), indexName, fieldName, keys...)
case requireField && !create:
translations, err = h.api.FindFieldKeys(r.Context(), indexName, fieldName, keys...)
case !requireField && create:
translations, err = h.api.CreateIndexKeys(r.Context(), indexName, keys...)
case !requireField && !create:
translations, err = h.api.FindIndexKeys(r.Context(), indexName, keys...)
}
if err != nil {
http.Error(w, fmt.Sprintf("translating keys: %v", err), http.StatusInternalServerError)
return
}
data, err := json.Marshal(translations)
if err != nil {
http.Error(w, fmt.Sprintf("encoding response: %v", err), http.StatusInternalServerError)
}
_, err = w.Write(data)
if err != nil {
h.logger.Printf("writing CreateFieldKeys response: %v", err)
}
}
func (h *Handler) handleFindIndexKeys(w http.ResponseWriter, r *http.Request) {
h.handleFindOrCreateKeys(w, r, false, false)
}
func (h *Handler) handleFindFieldKeys(w http.ResponseWriter, r *http.Request) {
h.handleFindOrCreateKeys(w, r, true, false)
}
func (h *Handler) handleCreateIndexKeys(w http.ResponseWriter, r *http.Request) {
h.handleFindOrCreateKeys(w, r, false, true)
}
func (h *Handler) handleCreateFieldKeys(w http.ResponseWriter, r *http.Request) {
h.handleFindOrCreateKeys(w, r, true, true)
}
func (h *Handler) handleMatchField(w http.ResponseWriter, r *http.Request) {
// Verify output type.
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "Not acceptable", http.StatusNotAcceptable)
return
}
indexName, ok := mux.Vars(r)["index"]
if !ok {
http.Error(w, "index name is required", http.StatusBadRequest)
return
}
fieldName, ok := mux.Vars(r)["field"]
if !ok {
http.Error(w, "field name is required", http.StatusBadRequest)
return
}
bd, err := readBody(r)
if err != nil {
http.Error(w, "failed to read body", http.StatusBadRequest)
return
}
matches, err := h.api.MatchField(r.Context(), indexName, fieldName, string(bd))
if err != nil {
http.Error(w, "failed to match pattern", http.StatusInternalServerError)
return
}
err = json.NewEncoder(w).Encode(matches)
if err != nil {
http.Error(w, "encoding result", http.StatusBadRequest)
return
}
}
func (h *Handler) handleReserveIDs(w http.ResponseWriter, r *http.Request) {
// Verify input and output types
if r.Header.Get("Content-Type") != "application/json" {
http.Error(w, "Unsupported media type", http.StatusUnsupportedMediaType)
return
}
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "Not acceptable", http.StatusNotAcceptable)
return
}
bd, err := readBody(r)
if err != nil {
http.Error(w, "failed to read body", http.StatusBadRequest)
return
}
var req IDAllocReserveRequest
req.Offset = ^uint64(0)
err = json.Unmarshal(bd, &req)
if err != nil {
http.Error(w, "failed to decode request", http.StatusBadRequest)
return
}
ids, err := h.api.ReserveIDs(req.Key, req.Session, req.Offset, req.Count)
if err != nil {
var esync ErrIDOffsetDesync
if errors.As(err, &esync) {
w.Header().Add("Content-Type", "application/json")
w.WriteHeader(http.StatusConflict)
err = json.NewEncoder(w).Encode(struct {
ErrIDOffsetDesync
Err string `json:"error"`
}{
ErrIDOffsetDesync: esync,
Err: err.Error(),
})
if err != nil {
h.logger.Debugf("failed to send desync error: %v", err)
}
return
}
http.Error(w, fmt.Sprintf("reserving IDs: %v", err.Error()), http.StatusBadRequest)
return
}
w.Header().Add("Content-Type", "application/json")
err = json.NewEncoder(w).Encode(ids)
if err != nil {
http.Error(w, "encoding result", http.StatusBadRequest)
return
}
}
func (h *Handler) handleCommitIDs(w http.ResponseWriter, r *http.Request) {
// Verify input and output types
if r.Header.Get("Content-Type") != "application/json" {
http.Error(w, "Unsupported media type", http.StatusUnsupportedMediaType)
return
} else if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "Not acceptable", http.StatusNotAcceptable)
return
}
bd, err := readBody(r)
if err != nil {
http.Error(w, "failed to read body", http.StatusBadRequest)
return
}
var req IDAllocCommitRequest
err = json.Unmarshal(bd, &req)
if err != nil {
http.Error(w, "failed to decode request", http.StatusBadRequest)
return
}
err = h.api.CommitIDs(req.Key, req.Session, req.Count)
if err != nil {
http.Error(w, fmt.Sprintf("committing IDs: %v", err.Error()), http.StatusBadRequest)
return
}
w.WriteHeader(http.StatusNoContent)
}
func (h *Handler) handleResetIDAlloc(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptType(r.Header, "text", "plain") {
http.Error(w, "text/plain is not an acceptable response type", http.StatusNotAcceptable)
return
}
indexName, ok := mux.Vars(r)["index"]
if !ok {
http.Error(w, "index name is required", http.StatusBadRequest)
return
}
err := h.api.ResetIDAlloc(indexName)
if err != nil {
http.Error(w, fmt.Sprintf("resetting ID allocation: %v", err.Error()), http.StatusBadRequest)
return
}
w.Header().Add("Content-Type", "text/plain")
w.WriteHeader(http.StatusOK)
w.Write([]byte("OK")) //nolint:errcheck
}
func (h *Handler) handleIDAllocData(w http.ResponseWriter, r *http.Request) {
w.Header().Add("Content-Type", "application/octet-stream")
if err := h.api.WriteIDAllocDataTo(w); err != nil {
http.Error(w, fmt.Sprintf("writeing id allocation data: %v", err.Error()), http.StatusInternalServerError)
return
}
}
func (h *Handler) handleRestoreIDAlloc(w http.ResponseWriter, r *http.Request) {
if err := h.api.RestoreIDAlloc(r.Body); err != nil {
http.Error(w, fmt.Sprintf("restoring id allocation: %v", err.Error()), http.StatusInternalServerError)
return
}
w.Header().Add("Content-Type", "text/plain")
w.WriteHeader(http.StatusOK)
w.Write([]byte("OK")) //nolint:errcheck
}
func (h *Handler) handlePostRestore(w http.ResponseWriter, r *http.Request) {
indexName, ok := mux.Vars(r)["index"]
if !ok {
http.Error(w, "index name is required", http.StatusBadRequest)
return
}
shardID, ok := mux.Vars(r)["shardID"]
if !ok {
http.Error(w, "shardID is required", http.StatusBadRequest)
return
}
shard, err := strconv.ParseUint(shardID, 10, 64)
if err != nil {
http.Error(w, fmt.Sprintf("failed to parse shard %v %v err:%v", indexName, shardID, err), http.StatusBadRequest)
return
}
ctx := context.Background()
//validate shard for this node
err = h.api.RestoreShard(ctx, indexName, shard, r.Body)
if err != nil {
http.Error(w, fmt.Sprintf("failed to restore shard %v %v err:%v", indexName, shard, err), http.StatusBadRequest)
return
}
w.Header().Add("Content-Type", "text/plain")
w.WriteHeader(http.StatusOK)
w.Write([]byte("OK")) //nolint:errcheck
}
func (h *Handler) handleLogin(w http.ResponseWriter, r *http.Request) {
if h.auth == nil {
http.Error(w, "", http.StatusNoContent)
return
}
h.auth.Login(w, r)
}
func (h *Handler) handleRedirect(w http.ResponseWriter, r *http.Request) {
if h.auth == nil {
http.Error(w, "", http.StatusNoContent)
return
}
h.auth.Redirect(w, r)
}
// handleOAuthConfig handles requests for a cleaned version of our oAuthConfig. We
// use this endpoint /internal/oauth-config in the `featurebase auth-token`
// subcommand to create a RedirectURL on the fly.
func (h *Handler) handleOAuthConfig(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
if h.auth == nil {
http.Error(w, "auth not enabled: no OAuthConfig", http.StatusNotFound)
return
}
config := h.auth.CleanOAuthConfig()
if err := json.NewEncoder(w).Encode(config); err != nil {
h.logger.Errorf("writing oauth-config info: %s", err)
}
}
func (h *Handler) handleCheckAuthentication(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
if h.auth == nil {
http.Error(w, "", http.StatusNoContent)
return
}
access, refresh := getTokens(r)
uinfo, err := h.auth.Authenticate(access, refresh)
if uinfo == nil || err != nil {
w.Header().Add("Content-Type", "text/plain")
http.Error(w, err.Error(), http.StatusUnauthorized)
return
}
// just in case it got refreshed
h.auth.SetCookie(w, uinfo.Token, uinfo.RefreshToken, uinfo.Expiry)
w.Header().Add("Content-Type", "text/plain")
w.WriteHeader(http.StatusOK)
w.Write([]byte("OK")) //nolint:errcheck
}
func (h *Handler) handleUserInfo(w http.ResponseWriter, r *http.Request) {
if !validHeaderAcceptJSON(r.Header) {
http.Error(w, "JSON only acceptable response", http.StatusNotAcceptable)
return
}
if h.auth == nil {
http.Error(w, "", http.StatusNoContent)
return
}
access, refresh := getTokens(r)
uinfo, err := h.auth.Authenticate(access, refresh)
if err != nil {
h.logger.Errorf("error authenticating: %v", err)
http.Error(w, err.Error(), http.StatusForbidden)
return
}
// just in case it got refreshed
h.auth.SetCookie(w, uinfo.Token, uinfo.RefreshToken, uinfo.Expiry)
if err := json.NewEncoder(w).Encode(uinfo); err != nil {
h.logger.Errorf("writing user info: %s", err)
}
}
func (h *Handler) handleLogout(w http.ResponseWriter, r *http.Request) {
if h.auth == nil {
http.Error(w, "", http.StatusNoContent)
return
}
h.auth.Logout(w, r)
}
// getTokens gets the access and refresh tokens from the request,
// returning empty strings if they aren't in the request.
func getTokens(r *http.Request) (string, string) {
var access, refresh string
if token, ok := r.Header["Authorization"]; ok && len(token) > 0 {
parts := strings.Split(token[0], "Bearer ")
if len(parts) >= 2 {
access = parts[1]
}
}
if token, ok := r.Header[authn.RefreshHeaderName]; ok && len(token) > 0 {
refresh = token[0]
}
if access == "" {
accessCookie, err := r.Cookie(authn.AccessCookieName)
if err != nil {
return access, refresh
}
access = accessCookie.Value
}
if refresh == "" {
refreshCookie, err := r.Cookie(authn.RefreshCookieName)
if err != nil {
return access, refresh
}
refresh = refreshCookie.Value
}
return access, refresh
}