featurebase/handler.go
2017-10-08 21:11:19 +03:00

1989 lines
56 KiB
Go

// Copyright 2017 Pilosa Corp.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//go:generate statik -src=./webui
package pilosa
import (
"context"
"encoding/csv"
"encoding/json"
"errors"
"expvar"
"fmt"
"io"
"io/ioutil"
"log"
"net/http"
// Imported for its side-effect of registering pprof endpoints with the server.
_ "net/http/pprof"
"os"
"runtime/debug"
"strconv"
"strings"
"time"
"reflect"
"github.com/gogo/protobuf/proto"
"github.com/gorilla/mux"
"github.com/pilosa/pilosa/internal"
"github.com/pilosa/pilosa/pql"
"unicode"
// Allow building Pilosa without the web UI.
_ "github.com/pilosa/pilosa/statik"
"github.com/rakyll/statik/fs"
)
// Handler represents an HTTP handler.
type Handler struct {
Holder *Holder
Broadcaster Broadcaster
StatusHandler StatusHandler
// Local hostname & cluster configuration.
Host *URI
Cluster *Cluster
ClientOptions *ClientOptions
Router *mux.Router
// The execution engine for running queries.
Executor interface {
Execute(context context.Context, index string, query *pql.Query, slices []uint64, opt *ExecOptions) ([]interface{}, error)
}
// The writer for any logging.
LogOutput io.Writer
}
// 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,
"frame": true,
"nodes": true,
"version": true,
}
// NewHandler returns a new instance of Handler with a default logger.
func NewHandler() *Handler {
handler := &Handler{
LogOutput: os.Stderr,
}
handler.Router = NewRouter(handler)
return handler
}
// NewRouter creates a Gorilla Mux http router.
func NewRouter(handler *Handler) *mux.Router {
router := mux.NewRouter()
router.HandleFunc("/", handler.handleWebUI).Methods("GET")
router.HandleFunc("/assets/{file}", handler.handleWebUI).Methods("GET")
router.PathPrefix("/debug/pprof/").Handler(http.DefaultServeMux).Methods("GET")
router.HandleFunc("/debug/vars", handler.handleExpvar).Methods("GET")
router.HandleFunc("/export", handler.handleGetExport).Methods("GET")
router.HandleFunc("/fragment/block/data", handler.handleGetFragmentBlockData).Methods("GET")
router.HandleFunc("/fragment/blocks", handler.handleGetFragmentBlocks).Methods("GET")
router.HandleFunc("/fragment/data", handler.handleGetFragmentData).Methods("GET")
router.HandleFunc("/fragment/data", handler.handlePostFragmentData).Methods("POST")
router.HandleFunc("/fragment/nodes", handler.handleGetFragmentNodes).Methods("GET")
router.HandleFunc("/import", handler.handlePostImport).Methods("POST")
router.HandleFunc("/import-value", handler.handlePostImportValue).Methods("POST")
router.HandleFunc("/index", handler.handleGetIndexes).Methods("GET")
router.HandleFunc("/index/{index}", handler.handleGetIndex).Methods("GET")
router.HandleFunc("/index/{index}", handler.handlePostIndex).Methods("POST")
router.HandleFunc("/index/{index}", handler.handleDeleteIndex).Methods("DELETE")
router.HandleFunc("/index/{index}/attr/diff", handler.handlePostIndexAttrDiff).Methods("POST")
//router.HandleFunc("/index/{index}/frame", handler.handleGetFrames).Methods("GET") // Not implemented.
router.HandleFunc("/index/{index}/frame/{frame}", handler.handlePostFrame).Methods("POST")
router.HandleFunc("/index/{index}/frame/{frame}", handler.handleDeleteFrame).Methods("DELETE")
router.HandleFunc("/index/{index}/frame/{frame}/attr/diff", handler.handlePostFrameAttrDiff).Methods("POST")
router.HandleFunc("/index/{index}/frame/{frame}/restore", handler.handlePostFrameRestore).Methods("POST")
router.HandleFunc("/index/{index}/frame/{frame}/time-quantum", handler.handlePatchFrameTimeQuantum).Methods("PATCH")
router.HandleFunc("/index/{index}/frame/{frame}/field/{field}", handler.handlePostFrameField).Methods("POST")
router.HandleFunc("/index/{index}/frame/{frame}/fields", handler.handleGetFrameFields).Methods("GET")
router.HandleFunc("/index/{index}/frame/{frame}/field/{field}", handler.handleDeleteFrameField).Methods("DELETE")
router.HandleFunc("/index/{index}/frame/{frame}/views", handler.handleGetFrameViews).Methods("GET")
router.HandleFunc("/index/{index}/frame/{frame}/view/{view}", handler.handleDeleteView).Methods("DELETE")
router.HandleFunc("/index/{index}/input/{input-definition}", handler.handlePostInput).Methods("POST")
router.HandleFunc("/index/{index}/input-definition/{input-definition}", handler.handleGetInputDefinition).Methods("GET")
router.HandleFunc("/index/{index}/input-definition/{input-definition}", handler.handlePostInputDefinition).Methods("POST")
router.HandleFunc("/index/{index}/input-definition/{input-definition}", handler.handleDeleteInputDefinition).Methods("DELETE")
router.HandleFunc("/index/{index}/query", handler.handlePostQuery).Methods("POST")
router.HandleFunc("/index/{index}/time-quantum", handler.handlePatchIndexTimeQuantum).Methods("PATCH")
router.HandleFunc("/hosts", handler.handleGetHosts).Methods("GET")
router.HandleFunc("/schema", handler.handleGetSchema).Methods("GET")
router.HandleFunc("/slices/max", handler.handleGetSliceMax).Methods("GET")
router.HandleFunc("/status", handler.handleGetStatus).Methods("GET")
router.HandleFunc("/version", handler.handleGetVersion).Methods("GET")
// TODO: Apply MethodNotAllowed statuses to all endpoints.
// Ideally this would be automatic, as described in this (wontfix) ticket:
// https://github.com/gorilla/mux/issues/6
// For now we just do it for the most commonly used handler, /query
router.HandleFunc("/index/{index}/query", handler.methodNotAllowedHandler).Methods("GET")
return router
}
func (h *Handler) methodNotAllowedHandler(w http.ResponseWriter, r *http.Request) {
http.Error(w, "method not allowed", http.StatusMethodNotAllowed)
}
// 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 := "PANIC: %s\n%s"
fmt.Fprintf(h.LogOutput, msg, err, stack)
fmt.Fprintf(w, msg, err, stack)
}
}()
t := time.Now()
h.Router.ServeHTTP(w, r)
dif := time.Since(t)
// Calculate per request StatsD metrics when the handler is fully configured.
if h.Holder != nil && h.Cluster != nil {
statsTags := make([]string, 0, 3)
if h.Cluster.LongQueryTime > 0 && dif > h.Cluster.LongQueryTime {
h.logger().Printf("%s %s %v", r.Method, r.URL.String(), dif)
statsTags = append(statsTags, "slow_query")
}
pathParts := strings.Split(r.URL.Path, "/")
endpointName := strings.Join(pathParts, "_")
if externalPrefixFlag[pathParts[1]] {
statsTags = append(statsTags, "external")
}
// useragent tag identifies internal/external endpoints
statsTags = append(statsTags, "useragent:"+r.UserAgent())
stats := h.Holder.Stats.WithTags(statsTags...)
stats.Histogram("http."+endpointName, float64(dif), 0.1)
}
}
func (h *Handler) handleWebUI(w http.ResponseWriter, r *http.Request) {
// If user is using curl, don't chuck HTML at them
if strings.HasPrefix(r.UserAgent(), "curl") {
http.Error(w, "Welcome. Pilosa is running. Visit https://www.pilosa.com/docs/ for more information or try the WebUI by visiting this URL in your browser.", http.StatusNotFound)
return
}
statikFS, err := fs.New()
if err != nil {
h.writeQueryResponse(w, r, &QueryResponse{Err: err})
h.logger().Println("Pilosa WebUI is not available. Please run `make generate-statik` before building Pilosa with `make install`.")
return
}
http.FileServer(statikFS).ServeHTTP(w, r)
}
// handleGetSchema handles GET /schema requests.
func (h *Handler) handleGetSchema(w http.ResponseWriter, r *http.Request) {
if err := json.NewEncoder(w).Encode(getSchemaResponse{
Indexes: h.Holder.Schema(),
}); err != nil {
h.logger().Printf("write schema response error: %s", err)
}
}
// handleGetStatus handles GET /status requests.
func (h *Handler) handleGetStatus(w http.ResponseWriter, r *http.Request) {
status, err := h.StatusHandler.ClusterStatus()
if err != nil {
h.logger().Printf("cluster status error: %s", err)
return
}
if err := json.NewEncoder(w).Encode(getStatusResponse{
Status: status,
}); err != nil {
h.logger().Printf("write status response error: %s", err)
}
}
type getSchemaResponse struct {
Indexes []*IndexInfo `json:"indexes"`
}
type getStatusResponse struct {
Status proto.Message `json:"status"`
}
// handlePostQuery handles /query requests.
func (h *Handler) handlePostQuery(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
// Parse incoming request.
req, err := h.readQueryRequest(r)
if err != nil {
w.WriteHeader(http.StatusBadRequest)
h.writeQueryResponse(w, r, &QueryResponse{Err: err})
return
}
// Build execution options.
opt := &ExecOptions{
Remote: req.Remote,
ExcludeAttrs: req.ExcludeAttrs,
ExcludeBits: req.ExcludeBits,
}
// Parse query string.
q, err := pql.NewParser(strings.NewReader(req.Query)).Parse()
if err != nil {
w.WriteHeader(http.StatusBadRequest)
h.writeQueryResponse(w, r, &QueryResponse{Err: err})
return
}
// Execute the query.
results, err := h.Executor.Execute(r.Context(), indexName, q, req.Slices, opt)
resp := &QueryResponse{Results: results, Err: err}
// Fill column attributes if requested.
if req.ColumnAttrs && !req.ExcludeBits {
// Consolidate all column ids across all calls.
var columnIDs []uint64
for _, result := range results {
bm, ok := result.(*Bitmap)
if !ok {
continue
}
columnIDs = uint64Slice(columnIDs).merge(bm.Bits())
}
// Retrieve column attributes across all calls.
columnAttrSets, err := h.readColumnAttrSets(h.Holder.Index(indexName), columnIDs)
if err != nil {
w.WriteHeader(http.StatusInternalServerError)
h.writeQueryResponse(w, r, &QueryResponse{Err: err})
return
}
resp.ColumnAttrSets = columnAttrSets
}
// Set appropriate status code, if there is an error.
if resp.Err != nil {
switch resp.Err {
case ErrTooManyWrites:
w.WriteHeader(http.StatusRequestEntityTooLarge)
default:
w.WriteHeader(http.StatusInternalServerError)
}
}
// Write response back to client.
if err := h.writeQueryResponse(w, r, resp); err != nil {
h.logger().Printf("write query response error: %s", err)
}
}
func (h *Handler) handleGetSliceMax(w http.ResponseWriter, r *http.Request) {
var ms map[string]uint64
if inverse, _ := strconv.ParseBool(r.URL.Query().Get("inverse")); inverse {
ms = h.Holder.MaxInverseSlices()
} else {
ms = h.Holder.MaxSlices()
}
if strings.Contains(r.Header.Get("Accept"), "application/x-protobuf") {
pb := &internal.MaxSlicesResponse{
MaxSlices: ms,
}
if buf, err := proto.Marshal(pb); err != nil {
h.logger().Printf("protobuf marshal error: %s", err)
} else if _, err := w.Write(buf); err != nil {
h.logger().Printf("stream write error: %s", err)
}
return
}
json.NewEncoder(w).Encode(sliceMaxResponse{
MaxSlices: ms,
})
}
type sliceMaxResponse struct {
MaxSlices map[string]uint64 `json:"maxSlices"`
}
// 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) {
indexName := mux.Vars(r)["index"]
index := h.Holder.Index(indexName)
if index == nil {
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
if err := json.NewEncoder(w).Encode(getIndexResponse{
map[string]string{"name": index.Name()},
}); err != nil {
h.logger().Printf("write response error: %s", err)
}
}
type getIndexResponse struct {
Index map[string]string `json:"index"`
}
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 err
}
validIndexOptions := getValidOptions(IndexOptions{})
err := validateOptions(m, validIndexOptions)
if err != nil {
return err
}
// Unmarshal expected values.
var _p _postIndexRequest
if err := json.Unmarshal(b, &_p); err != nil {
return err
}
p.Options = _p.Options
return nil
}
// 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
}
type postIndexResponse struct{}
// handleDeleteIndex handles DELETE /index request.
func (h *Handler) handleDeleteIndex(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
// Delete index from the holder.
if err := h.Holder.DeleteIndex(indexName); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Send the delete index message to all nodes.
err := h.Broadcaster.SendSync(
&internal.DeleteIndexMessage{
Index: indexName,
})
if err != nil {
h.logger().Printf("problem sending DeleteIndex message: %s", err)
}
// Encode response.
if err := json.NewEncoder(w).Encode(deleteIndexResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
h.Holder.Stats.Count("deleteIndex", 1, 1.0)
}
type deleteIndexResponse struct{}
// handlePostIndex handles POST /index request.
func (h *Handler) handlePostIndex(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
// Decode request.
var req postIndexRequest
err := json.NewDecoder(r.Body).Decode(&req)
if err == io.EOF {
// If no data was provided (EOF), we still create the index
// with default values.
} else if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Create index.
_, err = h.Holder.CreateIndex(indexName, req.Options)
if err == ErrIndexExists {
http.Error(w, err.Error(), http.StatusConflict)
return
} else if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Send the create index message to all nodes.
err = h.Broadcaster.SendSync(
&internal.CreateIndexMessage{
Index: indexName,
Meta: req.Options.Encode(),
})
if err != nil {
h.logger().Printf("problem sending CreateIndex message: %s", err)
}
// Encode response.
if err := json.NewEncoder(w).Encode(postIndexResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
h.Holder.Stats.Count("createIndex", 1, 1.0)
}
// handlePatchIndexTimeQuantum handles PATCH /index/time_quantum request.
func (h *Handler) handlePatchIndexTimeQuantum(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
// Decode request.
var req patchIndexTimeQuantumRequest
if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Validate quantum.
tq, err := ParseTimeQuantum(req.TimeQuantum)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Retrieve index by name.
index := h.Holder.Index(indexName)
if index == nil {
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
// Set default time quantum on index.
if err := index.SetTimeQuantum(tq); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Encode response.
if err := json.NewEncoder(w).Encode(patchIndexTimeQuantumResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
type patchIndexTimeQuantumRequest struct {
TimeQuantum string `json:"timeQuantum"`
}
type patchIndexTimeQuantumResponse struct{}
// handlePostIndexAttrDiff handles POST /index/attr/diff requests.
func (h *Handler) handlePostIndexAttrDiff(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
// Decode request.
var req postIndexAttrDiffRequest
if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Retrieve index from holder.
index := h.Holder.Index(indexName)
if index == nil {
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
// Retrieve local blocks.
blks, err := index.ColumnAttrStore().Blocks()
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Read all attributes from all mismatched blocks.
attrs := make(map[uint64]map[string]interface{})
for _, blockID := range AttrBlocks(blks).Diff(req.Blocks) {
// Retrieve block data.
m, err := index.ColumnAttrStore().BlockData(blockID)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Copy to index-wide struct.
for k, v := range m {
attrs[k] = v
}
}
// Encode response.
if err := json.NewEncoder(w).Encode(postIndexAttrDiffResponse{
Attrs: attrs,
}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
type postIndexAttrDiffRequest struct {
Blocks []AttrBlock `json:"blocks"`
}
type postIndexAttrDiffResponse struct {
Attrs map[uint64]map[string]interface{} `json:"attrs"`
}
// handlePostFrame handles POST /frame request.
func (h *Handler) handlePostFrame(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
frameName := mux.Vars(r)["frame"]
// Decode request.
var req postFrameRequest
err := json.NewDecoder(r.Body).Decode(&req)
if err == io.EOF {
// If no data was provided (EOF), we still create the frame
// with default values.
} else if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Find index.
index := h.Holder.Index(indexName)
if index == nil {
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
// Create frame.
_, err = index.CreateFrame(frameName, req.Options)
if err == ErrFrameExists {
http.Error(w, err.Error(), http.StatusConflict)
return
} else if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Send the create frame message to all nodes.
err = h.Broadcaster.SendSync(
&internal.CreateFrameMessage{
Index: indexName,
Frame: frameName,
Meta: req.Options.Encode(),
})
if err != nil {
h.logger().Printf("problem sending CreateFrame message: %s", err)
}
// Encode response.
if err := json.NewEncoder(w).Encode(postFrameResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
h.Holder.Stats.CountWithCustomTags("createFrame", 1, 1.0, []string{fmt.Sprintf("index:%s", indexName)})
}
type _postFrameRequest postFrameRequest
// Custom Unmarshal JSON to validate request body when creating a new frame. If there's new FrameOptions,
// adding it to validFrameOptions to make sure the new option is validated, otherwise the request will be failed
func (p *postFrameRequest) 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 err
}
validFrameOptions := getValidOptions(FrameOptions{})
err := validateOptions(m, validFrameOptions)
if err != nil {
return err
}
// Unmarshal expected values.
var _p _postFrameRequest
if err := json.Unmarshal(b, &_p); err != nil {
return err
}
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
}
type postFrameRequest struct {
Options FrameOptions `json:"options"`
}
type postFrameResponse struct{}
// handleDeleteFrame handles DELETE /frame request.
func (h *Handler) handleDeleteFrame(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
frameName := mux.Vars(r)["frame"]
// Find index.
index := h.Holder.Index(indexName)
if index == nil {
if err := json.NewEncoder(w).Encode(deleteIndexResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
return
}
// Delete frame from the index.
if err := index.DeleteFrame(frameName); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Send the delete frame message to all nodes.
err := h.Broadcaster.SendSync(
&internal.DeleteFrameMessage{
Index: indexName,
Frame: frameName,
})
if err != nil {
h.logger().Printf("problem sending DeleteFrame message: %s", err)
}
// Encode response.
if err := json.NewEncoder(w).Encode(deleteFrameResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
h.Holder.Stats.CountWithCustomTags("deleteFrame", 1, 1.0, []string{fmt.Sprintf("index:%s", indexName)})
}
type deleteFrameResponse struct{}
// handlePatchFrameTimeQuantum handles PATCH /frame/time_quantum request.
func (h *Handler) handlePatchFrameTimeQuantum(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
frameName := mux.Vars(r)["frame"]
// Decode request.
var req patchFrameTimeQuantumRequest
if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Validate quantum.
tq, err := ParseTimeQuantum(req.TimeQuantum)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Retrieve index by name.
f := h.Holder.Frame(indexName, frameName)
if f == nil {
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
// Set default time quantum on index.
if err := f.SetTimeQuantum(tq); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Encode response.
if err := json.NewEncoder(w).Encode(patchFrameTimeQuantumResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
type patchFrameTimeQuantumRequest struct {
TimeQuantum string `json:"timeQuantum"`
}
type patchFrameTimeQuantumResponse struct{}
// handlePostFrameField handles POST /frame/field request.
func (h *Handler) handlePostFrameField(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
frameName := mux.Vars(r)["frame"]
fieldName := mux.Vars(r)["field"]
// Decode request.
var req postFrameFieldRequest
if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Retrieve frame by name.
f := h.Holder.Frame(indexName, frameName)
if f == nil {
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
// Create new field.
if err := f.CreateField(&Field{
Name: fieldName,
Type: req.Type,
Min: req.Min,
Max: req.Max,
}); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Encode response.
if err := json.NewEncoder(w).Encode(postFrameFieldResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
type postFrameFieldRequest struct {
Type string `json:"type,omitempty"`
Min int64 `json:"min,omitempty"`
Max int64 `json:"max,omitempty"`
}
type postFrameFieldResponse struct{}
// handleDeleteFrameField handles DELETE /frame/field request.
func (h *Handler) handleDeleteFrameField(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
frameName := mux.Vars(r)["frame"]
fieldName := mux.Vars(r)["field"]
// Retrieve frame by name.
f := h.Holder.Frame(indexName, frameName)
if f == nil {
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
// Delete field.
if err := f.DeleteField(fieldName); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Encode response.
if err := json.NewEncoder(w).Encode(deleteFrameFieldResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
func (h *Handler) handleGetFrameFields(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
frameName := mux.Vars(r)["frame"]
index := h.Holder.index(indexName)
if index == nil {
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
frame := index.frame(frameName)
if frame == nil {
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
schema, err := frame.GetFields()
if err == ErrFrameFieldsNotAllowed {
http.Error(w, err.Error(), http.StatusBadRequest)
return
} else if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Encode response.
if err := json.NewEncoder(w).Encode(getFrameFieldsResponse{Fields: schema.Fields}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
type getFrameFieldsResponse struct {
Fields []*Field `json:"fields,omitempty"`
}
type deleteFrameFieldRequest struct{}
type deleteFrameFieldResponse struct{}
// handleGetFrameViews handles GET /frame/views request.
func (h *Handler) handleGetFrameViews(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
frameName := mux.Vars(r)["frame"]
// Retrieve views.
f := h.Holder.Frame(indexName, frameName)
if f == nil {
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
// Fetch views.
views := f.Views()
names := make([]string, len(views))
for i := range views {
names[i] = views[i].Name()
}
// Encode response.
if err := json.NewEncoder(w).Encode(getFrameViewsResponse{Views: names}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
// handleDeleteView handles Delete /frame/view request.
func (h *Handler) handleDeleteView(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
frameName := mux.Vars(r)["frame"]
viewName := mux.Vars(r)["view"]
// Retrieve frame.
f := h.Holder.Frame(indexName, frameName)
if f == nil {
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
// Delete the view.
if err := f.DeleteView(viewName); err != nil {
// Ingore this error becuase views do not exist on all nodes due to slice distribution.
if err != ErrInvalidView {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
}
// Send the delete view message to all nodes.
err := h.Broadcaster.SendSync(
&internal.DeleteViewMessage{
Index: indexName,
Frame: frameName,
View: viewName,
})
if err != nil {
h.logger().Printf("problem sending DeleteView message: %s", err)
}
// Encode response.
if err := json.NewEncoder(w).Encode(deleteViewResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
type deleteViewResponse struct{}
type getFrameViewsResponse struct {
Views []string `json:"views,omitempty"`
}
// handlePostFrameAttrDiff handles POST /frame/attr/diff requests.
func (h *Handler) handlePostFrameAttrDiff(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
frameName := mux.Vars(r)["frame"]
// Decode request.
var req postFrameAttrDiffRequest
if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Retrieve index from holder.
f := h.Holder.Frame(indexName, frameName)
if f == nil {
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
// Retrieve local blocks.
blks, err := f.RowAttrStore().Blocks()
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Read all attributes from all mismatched blocks.
attrs := make(map[uint64]map[string]interface{})
for _, blockID := range AttrBlocks(blks).Diff(req.Blocks) {
// Retrieve block data.
m, err := f.RowAttrStore().BlockData(blockID)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Copy to index-wide struct.
for k, v := range m {
attrs[k] = v
}
}
// Encode response.
if err := json.NewEncoder(w).Encode(postFrameAttrDiffResponse{
Attrs: attrs,
}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
type postFrameAttrDiffRequest struct {
Blocks []AttrBlock `json:"blocks"`
}
type postFrameAttrDiffResponse struct {
Attrs map[uint64]map[string]interface{} `json:"attrs"`
}
// readColumnAttrSets returns a list of column attribute objects by id.
func (h *Handler) readColumnAttrSets(index *Index, ids []uint64) ([]*ColumnAttrSet, error) {
if index == nil {
return nil, nil
}
a := make([]*ColumnAttrSet, 0, len(ids))
for _, id := range ids {
// Read attributes for column. Skip column if empty.
attrs, err := index.ColumnAttrStore().Attrs(id)
if err != nil {
return nil, err
} else if len(attrs) == 0 {
continue
}
// Append column with attributes.
a = append(a, &ColumnAttrSet{ID: id, Attrs: attrs})
}
return a, nil
}
// 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)
}
}
// readProtobufQueryRequest parses query parameters in protobuf from r.
func (h *Handler) readProtobufQueryRequest(r *http.Request) (*QueryRequest, error) {
// Slurp the body.
body, err := ioutil.ReadAll(r.Body)
if err != nil {
return nil, err
}
// Unmarshal into object.
var req internal.QueryRequest
if err := proto.Unmarshal(body, &req); err != nil {
return nil, err
}
return decodeQueryRequest(&req), nil
}
// readURLQueryRequest parses query parameters from URL parameters from r.
func (h *Handler) readURLQueryRequest(r *http.Request) (*QueryRequest, error) {
q := r.URL.Query()
validQuery := validOptions(QueryRequest{})
for key := range q {
if _, ok := validQuery[key]; !ok {
return nil, errors.New("invalid query params")
}
}
// Parse query string.
buf, err := ioutil.ReadAll(r.Body)
if err != nil {
return nil, err
}
query := string(buf)
// Parse list of slices.
slices, err := parseUint64Slice(q.Get("slices"))
if err != nil {
return nil, errors.New("invalid slice argument")
}
return &QueryRequest{
Query: query,
Slices: slices,
ColumnAttrs: q.Get("columnAttrs") == "true",
ExcludeAttrs: q.Get("excludeAttrs") == "true",
ExcludeBits: q.Get("excludeBits") == "true",
}, nil
}
// validOptions return all attributes of an interface with lower first character.
func validOptions(v interface{}) map[string]bool {
validQuery := make(map[string]bool)
argsType := reflect.ValueOf(v).Type()
for i := 0; i < argsType.NumField(); i++ {
fieldName := argsType.Field(i).Name
chars := []rune(fieldName)
chars[0] = unicode.ToLower(chars[0])
fieldName = string(chars)
validQuery[fieldName] = true
}
return validQuery
}
// writeQueryResponse writes the response from the executor to w.
func (h *Handler) writeQueryResponse(w http.ResponseWriter, r *http.Request, resp *QueryResponse) error {
if strings.Contains(r.Header.Get("Accept"), "application/x-protobuf") {
return h.writeProtobufQueryResponse(w, resp)
}
return h.writeJSONQueryResponse(w, resp)
}
// writeProtobufQueryResponse writes the response from the executor to w as protobuf.
func (h *Handler) writeProtobufQueryResponse(w http.ResponseWriter, resp *QueryResponse) error {
if buf, err := proto.Marshal(encodeQueryResponse(resp)); err != nil {
return err
} else if _, err := w.Write(buf); err != nil {
return err
}
return nil
}
// writeJSONQueryResponse writes the response from the executor to w as JSON.
func (h *Handler) writeJSONQueryResponse(w http.ResponseWriter, resp *QueryResponse) error {
return json.NewEncoder(w).Encode(resp)
}
// handlePostImport handles /import requests.
func (h *Handler) handlePostImport(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
}
// Read entire body.
body, err := ioutil.ReadAll(r.Body)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Marshal into request object.
var req internal.ImportRequest
if err := proto.Unmarshal(body, &req); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Convert timestamps to time.Time.
timestamps := make([]*time.Time, len(req.Timestamps))
for i, ts := range req.Timestamps {
if ts == 0 {
continue
}
t := time.Unix(0, ts)
timestamps[i] = &t
}
// Validate that this handler owns the slice.
if !h.Cluster.OwnsFragment(h.Host.HostPort(), req.Index, req.Slice) {
mesg := fmt.Sprintf("host does not own slice %s-%s slice:%d", h.Host, req.Index, req.Slice)
http.Error(w, mesg, http.StatusPreconditionFailed)
return
}
// Find the Index.
h.logger().Println("importing:", req.Index, req.Frame, req.Slice)
index := h.Holder.Index(req.Index)
if index == nil {
h.logger().Printf("fragment error: index=%s, frame=%s, slice=%d, err=%s", req.Index, req.Frame, req.Slice, ErrIndexNotFound.Error())
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
// Retrieve frame.
f := index.Frame(req.Frame)
if f == nil {
h.logger().Printf("frame error: index=%s, frame=%s, slice=%d, err=%s", req.Index, req.Frame, req.Slice, ErrFrameNotFound.Error())
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
// Import into fragment.
err = f.Import(req.RowIDs, req.ColumnIDs, timestamps)
if err != nil {
h.logger().Printf("import error: index=%s, frame=%s, slice=%d, bits=%d, err=%s", req.Index, req.Frame, req.Slice, len(req.ColumnIDs), err)
return
}
// Marshal response object.
buf, e := proto.Marshal(&internal.ImportResponse{Err: errorString(err)})
if e != nil {
http.Error(w, fmt.Sprintf("marshal import response: %s", err), http.StatusInternalServerError)
return
}
// Write response.
if err != nil {
w.WriteHeader(http.StatusInternalServerError)
}
w.Write(buf)
}
// handlePostImportValue handles /import-value requests.
func (h *Handler) handlePostImportValue(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
}
// Read entire body.
body, err := ioutil.ReadAll(r.Body)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Marshal into request object.
var req internal.ImportValueRequest
if err := proto.Unmarshal(body, &req); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Validate that this handler owns the slice.
if !h.Cluster.OwnsFragment(h.Host.HostPort(), req.Index, req.Slice) {
mesg := fmt.Sprintf("host does not own slice %s-%s slice:%d", h.Host, req.Index, req.Slice)
http.Error(w, mesg, http.StatusPreconditionFailed)
return
}
// Find the Index.
h.logger().Println("importing:", req.Index, req.Frame, req.Slice)
index := h.Holder.Index(req.Index)
if index == nil {
h.logger().Printf("fragment error: index=%s, frame=%s, slice=%d, err=%s", req.Index, req.Frame, req.Slice, ErrIndexNotFound.Error())
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
// Retrieve frame.
f := index.Frame(req.Frame)
if f == nil {
h.logger().Printf("frame error: index=%s, frame=%s, slice=%d, err=%s", req.Index, req.Frame, req.Slice, ErrFrameNotFound.Error())
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
// Import into fragment.
err = f.ImportValue(req.Field, req.ColumnIDs, req.Values)
if err != nil {
h.logger().Printf("import error: index=%s, frame=%s, slice=%d, field=%s, bits=%d, err=%s", req.Index, req.Frame, req.Slice, req.Field, len(req.ColumnIDs), err)
return
}
// Marshal response object.
buf, e := proto.Marshal(&internal.ImportResponse{Err: errorString(err)})
if e != nil {
http.Error(w, fmt.Sprintf("marshal import response: %s", err), http.StatusInternalServerError)
return
}
// Write response.
if err != nil {
w.WriteHeader(http.StatusInternalServerError)
}
w.Write(buf)
}
// 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, frame, view := q.Get("index"), q.Get("frame"), q.Get("view")
slice, err := strconv.ParseUint(q.Get("slice"), 10, 64)
if err != nil {
http.Error(w, "invalid slice", http.StatusBadRequest)
return
}
// Validate that this handler owns the slice.
if !h.Cluster.OwnsFragment(h.Host.HostPort(), index, slice) {
mesg := fmt.Sprintf("host does not own slice %s-%s slice:%d", h.Host, index, slice)
http.Error(w, mesg, http.StatusPreconditionFailed)
return
}
// Find the fragment.
f := h.Holder.Fragment(index, frame, view, slice)
if f == nil {
return
}
// Wrap writer with a CSV writer.
cw := csv.NewWriter(w)
// Iterate over each bit.
if err := f.ForEachBit(func(rowID, columnID uint64) error {
return cw.Write([]string{
strconv.FormatUint(rowID, 10),
strconv.FormatUint(columnID, 10),
})
}); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Ensure data is flushed.
cw.Flush()
}
// handleGetFragmentNodes handles /fragment/nodes requests.
func (h *Handler) handleGetFragmentNodes(w http.ResponseWriter, r *http.Request) {
q := r.URL.Query()
index := q.Get("index")
// Read slice parameter.
slice, err := strconv.ParseUint(q.Get("slice"), 10, 64)
if err != nil {
http.Error(w, "slice required", http.StatusBadRequest)
return
}
// Retrieve fragment owner nodes.
nodes := h.Cluster.FragmentNodes(index, slice)
// Write to response.
if err := json.NewEncoder(w).Encode(nodes); err != nil {
h.logger().Printf("json write error: %s", err)
}
}
// handleGetFragmentBackup handles GET /fragment/data requests.
func (h *Handler) handleGetFragmentData(w http.ResponseWriter, r *http.Request) {
// Read slice parameter.
q := r.URL.Query()
slice, err := strconv.ParseUint(q.Get("slice"), 10, 64)
if err != nil {
http.Error(w, "slice required", http.StatusBadRequest)
return
}
// Retrieve fragment from holder.
f := h.Holder.Fragment(q.Get("index"), q.Get("frame"), q.Get("view"), slice)
if f == nil {
http.Error(w, "fragment not found", http.StatusNotFound)
return
}
// Stream fragment to response body.
if _, err := f.WriteTo(w); err != nil {
h.logger().Printf("fragment backup error: %s", err)
}
}
// handlePostFragmentRestore handles POST /fragment/data requests.
func (h *Handler) handlePostFragmentData(w http.ResponseWriter, r *http.Request) {
// Read slice parameter.
q := r.URL.Query()
slice, err := strconv.ParseUint(q.Get("slice"), 10, 64)
if err != nil {
http.Error(w, "slice required", http.StatusBadRequest)
return
}
// Retrieve frame.
f := h.Holder.Frame(q.Get("index"), q.Get("frame"))
if f == nil {
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
// Retrieve view.
view, err := f.CreateViewIfNotExists(q.Get("view"))
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Retrieve fragment from frame.
frag, err := view.CreateFragmentIfNotExists(slice)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Read fragment in from request body.
if _, err := frag.ReadFrom(r.Body); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
}
// handleGetFragmentData handles GET /fragment/block/data requests.
func (h *Handler) handleGetFragmentBlockData(w http.ResponseWriter, r *http.Request) {
// Read request object.
var req internal.BlockDataRequest
if body, err := ioutil.ReadAll(r.Body); err != nil {
http.Error(w, "ready body error", http.StatusBadRequest)
return
} else if err := proto.Unmarshal(body, &req); err != nil {
http.Error(w, "unmarshal body error", http.StatusBadRequest)
return
}
// Retrieve fragment from holder.
f := h.Holder.Fragment(req.Index, req.Frame, req.View, req.Slice)
if f == nil {
http.Error(w, ErrFragmentNotFound.Error(), http.StatusNotFound)
return
}
// Read data
var resp internal.BlockDataResponse
if f != nil {
resp.RowIDs, resp.ColumnIDs = f.BlockData(int(req.Block))
}
// Encode response.
buf, err := proto.Marshal(&resp)
if err != nil {
h.logger().Printf("merge block response encoding error: %s", err)
return
}
// Write response.
w.Header().Set("Content-Type", "application/protobuf")
w.Header().Set("Content-Length", strconv.Itoa(len(buf)))
w.Write(buf)
}
// handleGetFragmentBlocks handles GET /fragment/blocks requests.
func (h *Handler) handleGetFragmentBlocks(w http.ResponseWriter, r *http.Request) {
// Read slice parameter.
q := r.URL.Query()
slice, err := strconv.ParseUint(q.Get("slice"), 10, 64)
if err != nil {
http.Error(w, "slice required", http.StatusBadRequest)
return
}
// Retrieve fragment from holder.
f := h.Holder.Fragment(q.Get("index"), q.Get("frame"), q.Get("view"), slice)
if f == nil {
http.Error(w, "fragment not found", http.StatusNotFound)
return
}
// Retrieve blocks.
blocks := f.Blocks()
// Encode response.
if err := json.NewEncoder(w).Encode(getFragmentBlocksResponse{
Blocks: blocks,
}); err != nil {
h.logger().Printf("block response encoding error: %s", err)
}
}
type getFragmentBlocksResponse struct {
Blocks []FragmentBlock `json:"blocks"`
}
// handlePostFrameRestore handles POST /frame/restore requests.
func (h *Handler) handlePostFrameRestore(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
frameName := mux.Vars(r)["frame"]
q := r.URL.Query()
hostStr := q.Get("host")
// Validate query parameters.
if hostStr == "" {
http.Error(w, "host required", http.StatusBadRequest)
return
}
host, err := NewURIFromAddress(hostStr)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
}
// Create a client for the remote cluster.
client, err := NewClientFromURI(host, h.ClientOptions)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Determine the maximum number of slices.
maxSlices, err := client.MaxSliceByIndex(r.Context())
if err != nil {
http.Error(w, "cannot determine remote slice count: "+err.Error(), http.StatusInternalServerError)
return
}
// Retrieve frame.
f := h.Holder.Frame(indexName, frameName)
if f == nil {
http.Error(w, ErrFrameNotFound.Error(), http.StatusNotFound)
return
}
// Retrieve list of all views.
views, err := client.FrameViews(r.Context(), indexName, frameName)
if err != nil {
http.Error(w, "cannot retrieve frame views: "+err.Error(), http.StatusInternalServerError)
return
}
// Loop over each slice and import it if this node owns it.
for slice := uint64(0); slice <= maxSlices[indexName]; slice++ {
// Ignore this slice if we don't own it.
if !h.Cluster.OwnsFragment(h.Host.HostPort(), indexName, slice) {
continue
}
// Loop over view names.
for _, view := range views {
// Create view.
v, err := f.CreateViewIfNotExists(view)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Otherwise retrieve the local fragment.
frag, err := v.CreateFragmentIfNotExists(slice)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
// Stream backup from remote node.
rd, err := client.BackupSlice(r.Context(), indexName, frameName, view, slice)
if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
} else if rd == nil {
continue // slice doesn't exist
}
// Restore to local frame and always close reader.
if err := func() error {
defer rd.Close()
if _, err := frag.ReadFrom(rd); err != nil {
return err
}
return nil
}(); err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
}
}
}
// handleGetHosts handles /hosts requests.
func (h *Handler) handleGetHosts(w http.ResponseWriter, r *http.Request) {
if err := json.NewEncoder(w).Encode(h.Cluster.Nodes); err != nil {
h.logger().Printf("write version response error: %s", err)
}
}
// handleGetVersion handles /version requests.
func (h *Handler) handleGetVersion(w http.ResponseWriter, r *http.Request) {
if err := json.NewEncoder(w).Encode(struct {
Version string `json:"version"`
}{
Version: Version,
}); err != nil {
h.logger().Printf("write version response error: %s", err)
}
}
// handleExpvar handles /debug/vars requests.
func (h *Handler) handleExpvar(w http.ResponseWriter, r *http.Request) {
// Copied from $GOROOT/src/expvar/expvar.go
w.Header().Set("Content-Type", "application/json; charset=utf-8")
fmt.Fprintf(w, "{\n")
first := true
expvar.Do(func(kv expvar.KeyValue) {
if !first {
fmt.Fprintf(w, ",\n")
}
first = false
fmt.Fprintf(w, "%q: %s", kv.Key, kv.Value)
})
fmt.Fprintf(w, "\n}\n")
}
// logger returns a logger for the handler.
func (h *Handler) logger() *log.Logger {
return log.New(h.LogOutput, "", log.LstdFlags)
}
// QueryRequest represent a request to process a query.
type QueryRequest struct {
// Index to execute query against.
Index string
// The query string to parse and execute.
Query string
// The slices to include in the query execution.
// If empty, all slices are included.
Slices []uint64
// Return column attributes, if true.
ColumnAttrs bool
// Do not return row attributes, if true.
ExcludeAttrs bool
// Do not return bits, if true.
ExcludeBits bool
// If true, indicates that query is part of a larger distributed query.
// If false, this request is on the originating node.
Remote bool
}
func decodeQueryRequest(pb *internal.QueryRequest) *QueryRequest {
req := &QueryRequest{
Query: pb.Query,
Slices: pb.Slices,
ColumnAttrs: pb.ColumnAttrs,
Remote: pb.Remote,
ExcludeAttrs: pb.ExcludeAttrs,
ExcludeBits: pb.ExcludeBits,
}
return req
}
// QueryResponse represent a response from a processed query.
type QueryResponse struct {
// Result for each top-level query call.
// Can be a Bitmap, Pairs, or uint64.
Results []interface{}
// Set of column attribute objects matching IDs returned in Result.
ColumnAttrSets []*ColumnAttrSet
// Error during parsing or execution.
Err error
}
// MarshalJSON marshals QueryResponse into a JSON-encoded byte slice
func (resp *QueryResponse) MarshalJSON() ([]byte, error) {
var output struct {
Results []interface{} `json:"results,omitempty"`
ColumnAttrSets []*ColumnAttrSet `json:"columnAttrs,omitempty"`
Err string `json:"error,omitempty"`
}
output.Results = resp.Results
output.ColumnAttrSets = resp.ColumnAttrSets
if resp.Err != nil {
output.Err = resp.Err.Error()
}
return json.Marshal(output)
}
func encodeQueryResponse(resp *QueryResponse) *internal.QueryResponse {
pb := &internal.QueryResponse{
Results: make([]*internal.QueryResult, len(resp.Results)),
ColumnAttrSets: encodeColumnAttrSets(resp.ColumnAttrSets),
}
for i := range resp.Results {
pb.Results[i] = &internal.QueryResult{}
switch result := resp.Results[i].(type) {
case *Bitmap:
pb.Results[i].Bitmap = encodeBitmap(result)
case []Pair:
pb.Results[i].Pairs = encodePairs(result)
case SumCount:
pb.Results[i].SumCount = encodeSumCount(result)
case uint64:
pb.Results[i].N = result
case bool:
pb.Results[i].Changed = result
}
}
if resp.Err != nil {
pb.Err = resp.Err.Error()
}
return pb
}
// 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, err
}
a = append(a, num)
}
return a, nil
}
// errorString returns the string representation of err.
func errorString(err error) string {
if err == nil {
return ""
}
return err.Error()
}
// handlePostInputDefinition handles POST /input-definition request.
func (h *Handler) handlePostInputDefinition(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
inputDefName := mux.Vars(r)["input-definition"]
// Find index.
index := h.Holder.Index(indexName)
if index == nil {
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
// Decode request.
var req InputDefinitionInfo
err := json.NewDecoder(r.Body).Decode(&req)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Validation the input definition with the curent index's ColumnLabel.
if err := req.Validate(index.ColumnLabel()); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
// Encode InputDefinition to its internal representation.
def := req.Encode()
def.Name = inputDefName
// Create InputDefinition.
_, err = index.CreateInputDefinition(def)
if err == ErrInputDefinitionExists {
http.Error(w, err.Error(), http.StatusConflict)
return
} else if err != nil {
http.Error(w, err.Error(), http.StatusInternalServerError)
return
}
err = h.Broadcaster.SendSync(
&internal.CreateInputDefinitionMessage{
Index: indexName,
Definition: def,
})
if err != nil {
h.logger().Printf("problem sending CreateInputDefinition message: %s", err)
}
if err := json.NewEncoder(w).Encode(defaultInputDefinitionResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
// handleGetInputDefinition handles GET /input-definition request.
func (h *Handler) handleGetInputDefinition(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
inputDefName := mux.Vars(r)["input-definition"]
// Find index.
index := h.Holder.Index(indexName)
if index == nil {
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
inputDef, err := index.InputDefinition(inputDefName)
if err != nil {
http.Error(w, err.Error(), http.StatusNotFound)
return
}
if err = json.NewEncoder(w).Encode(InputDefinitionInfo{
Frames: inputDef.frames,
Fields: inputDef.fields,
}); err != nil {
h.logger().Printf("write status response error: %s", err)
}
}
// handleDeleteInputDefinition handles DELETE /input-definition request.
func (h *Handler) handleDeleteInputDefinition(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
inputDefName := mux.Vars(r)["input-definition"]
// Find index.
index := h.Holder.Index(indexName)
if index == nil {
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
// Delete input definition from the index.
if err := index.DeleteInputDefinition(inputDefName); err != nil {
http.Error(w, err.Error(), http.StatusNotFound)
return
}
err := h.Broadcaster.SendSync(
&internal.DeleteInputDefinitionMessage{
Index: indexName,
Name: inputDefName,
})
if err != nil {
h.logger().Printf("problem sending DeleteInputDefinition message: %s", err)
}
if err := json.NewEncoder(w).Encode(defaultInputDefinitionResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
type defaultInputDefinitionResponse struct{}
func (h *Handler) handlePostInput(w http.ResponseWriter, r *http.Request) {
indexName := mux.Vars(r)["index"]
inputDefName := mux.Vars(r)["input-definition"]
// Find index.
index := h.Holder.Index(indexName)
if index == nil {
http.Error(w, ErrIndexNotFound.Error(), http.StatusNotFound)
return
}
// Decode request.
var reqs []interface{}
err := json.NewDecoder(r.Body).Decode(&reqs)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
for _, req := range reqs {
bits, err := h.InputJSONDataParser(req.(map[string]interface{}), index, inputDefName)
if err == ErrInputDefinitionNotFound {
http.Error(w, err.Error(), http.StatusNotFound)
return
} else if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
for fr, bs := range bits {
err := index.InputBits(fr, bs)
if err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
}
}
if err := json.NewEncoder(w).Encode(defaultInputDefinitionResponse{}); err != nil {
h.logger().Printf("response encoding error: %s", err)
}
}
// InputJSONDataParser validates input json file and executes SetBit.
func (h *Handler) InputJSONDataParser(req map[string]interface{}, index *Index, name string) (map[string][]*Bit, error) {
inputDef, err := index.InputDefinition(name)
if err != nil {
return nil, err
}
// If field in input data is not in defined definition, return error.
var colValue uint64
validFields := make(map[string]bool)
timestampFrame := make(map[string]int64)
for _, field := range inputDef.Fields() {
validFields[field.Name] = true
if field.PrimaryKey {
columnLabel := field.Name
value, ok := req[columnLabel]
if !ok {
return nil, fmt.Errorf("columnLabel required")
}
rawValue, ok := value.(float64) // The default JSON marshalling will interpret this as a float
if !ok {
return nil, fmt.Errorf("float64 require, got value:%s, type: %s", value, reflect.TypeOf(value))
}
colValue = uint64(rawValue)
}
// Find frame that need to add timestamp.
for _, action := range field.Actions {
if action.ValueDestination == InputSetTimestamp {
timestampFrame[action.Frame], err = GetTimeStamp(req, field.Name)
if err != nil {
return nil, err
}
}
}
}
for key := range req {
_, ok := validFields[key]
if !ok {
return nil, fmt.Errorf("field not found: %s", key)
}
}
setBits := make(map[string][]*Bit)
for _, field := range inputDef.Fields() {
// skip field that defined in definition but not in input data
if _, ok := req[field.Name]; !ok {
continue
}
// Looking into timestampFrame map and set timestamp to the whole frame
for _, action := range field.Actions {
frame := action.Frame
timestamp := timestampFrame[action.Frame]
// Skip input data field values that are set to null
if req[field.Name] == nil {
continue
}
bit, err := HandleAction(action, req[field.Name], colValue, timestamp)
if err != nil {
return nil, fmt.Errorf("error handling action: %s, err: %s", action.ValueDestination, err)
}
if bit != nil {
setBits[frame] = append(setBits[frame], bit)
}
}
}
return setBits, nil
}
// GetTimeStamp retrieves unix timestamp from Input data.
func GetTimeStamp(data map[string]interface{}, timeField string) (int64, error) {
tmstamp, ok := data[timeField]
if !ok {
return 0, nil
}
timestamp, ok := tmstamp.(string)
if !ok {
return 0, fmt.Errorf("set-timestamp value must be in time format: YYYY-MM-DD, has: %v", data[timeField])
}
v, err := time.Parse(TimeFormat, timestamp)
if err != nil {
return 0, err
}
return v.Unix(), nil
}