Files
fission-src/fission/function.go
T
Ta-Ching ChenandSoam Vasani e56e6482b3 Fix missing checksum from CLI uploads (issue #342) (#343)
Archive upload from the CLI wasn't filling in the checksum field, causing validation to fail.
2017-09-22 12:27:42 -07:00

454 lines
11 KiB
Go

/*
Copyright 2016 The Fission Authors.
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.
*/
package main
import (
"context"
"crypto/sha256"
"encoding/hex"
"fmt"
"io"
"io/ioutil"
"os"
"strings"
"text/tabwriter"
"time"
"github.com/dchest/uniuri"
"github.com/satori/go.uuid"
"github.com/urfave/cli"
"k8s.io/client-go/1.5/pkg/api"
"github.com/fission/fission"
"github.com/fission/fission/controller/client"
"github.com/fission/fission/fission/logdb"
storageSvcClient "github.com/fission/fission/storagesvc/client"
"github.com/fission/fission/tpr"
)
func fileSize(filePath string) int64 {
info, err := os.Stat(filePath)
checkErr(err, fmt.Sprintf("stat %v", filePath))
return info.Size()
}
// upload a file and return a fission.Archive
func createArchive(client *client.Client, fileName string) *fission.Archive {
var archive fission.Archive
if fileSize(fileName) < fission.ArchiveLiteralSizeLimit {
contents := getContents(fileName)
archive.Type = fission.ArchiveTypeLiteral
archive.Literal = contents
} else {
u := strings.TrimSuffix(client.Url, "/") + "/proxy/storage"
ssClient := storageSvcClient.MakeClient(u)
// TODO add a progress bar
id, err := ssClient.Upload(fileName, nil)
checkErr(err, fmt.Sprintf("upload file %v", fileName))
archiveUrl := ssClient.GetUrl(id)
archive.Type = fission.ArchiveTypeUrl
archive.URL = archiveUrl
f, err := os.Open(fileName)
if err != nil {
checkErr(err, fmt.Sprintf("find file %v", fileName))
}
defer f.Close()
h := sha256.New()
if _, err := io.Copy(h, f); err != nil {
checkErr(err, fmt.Sprintf("calculate checksum for file %v", fileName))
}
archive.Checksum = fission.Checksum{
Type: fission.ChecksumTypeSHA256,
Sum: hex.EncodeToString(h.Sum(nil)),
}
}
return &archive
}
func getContents(filePath string) []byte {
var code []byte
var err error
code, err = ioutil.ReadFile(filePath)
checkErr(err, fmt.Sprintf("read %v", filePath))
return code
}
func fnCreate(c *cli.Context) error {
client := getClient(c.GlobalString("server"))
fnName := c.String("name")
if len(fnName) == 0 {
fatal("Need --name argument.")
}
envName := c.String("env")
if len(envName) == 0 {
fatal("Need --env argument.")
}
srcPkgName := c.String("srcpkg")
deployPkgName := c.String("code")
if len(deployPkgName) == 0 {
deployPkgName = c.String("package")
}
if len(srcPkgName) == 0 && len(deployPkgName) == 0 {
fatal("Need --code or --package to specify deployment package, or use --srcpkg to specify source package.")
}
function := &tpr.Function{
Metadata: api.ObjectMeta{
Name: fnName,
Namespace: api.NamespaceDefault,
},
Spec: fission.FunctionSpec{
Environment: fission.EnvironmentReference{
Name: envName,
Namespace: api.NamespaceDefault,
},
},
}
var pkgSpec fission.PackageSpec
if len(srcPkgName) > 0 {
pkgSpec.Source = *createArchive(client, srcPkgName)
}
if len(deployPkgName) > 0 {
pkgSpec.Deployment = *createArchive(client, deployPkgName)
}
pkgName := fmt.Sprintf("%v-%v", fnName, strings.ToLower(uniuri.NewLen(6)))
pkg := &tpr.Package{
Metadata: api.ObjectMeta{
Name: pkgName,
Namespace: api.NamespaceDefault,
},
Spec: pkgSpec,
}
newpkg, err := client.PackageCreate(pkg)
checkErr(err, "create package")
function.Spec.Package = fission.FunctionPackageRef{
PackageRef: fission.PackageRef{
Name: newpkg.Name,
Namespace: newpkg.Namespace,
ResourceVersion: newpkg.ResourceVersion,
},
}
_, err = client.FunctionCreate(function)
checkErr(err, "create function")
fmt.Printf("function '%v' created\n", fnName)
// Allow the user to specify an HTTP trigger while creating a function.
triggerUrl := c.String("url")
if len(triggerUrl) == 0 {
return nil
}
method := c.String("method")
if len(method) == 0 {
method = "GET"
}
triggerName := uuid.NewV4().String()
ht := &tpr.Httptrigger{
Metadata: api.ObjectMeta{
Name: triggerName,
Namespace: api.NamespaceDefault,
},
Spec: fission.HTTPTriggerSpec{
RelativeURL: triggerUrl,
Method: getMethod(method),
FunctionReference: fission.FunctionReference{
Type: fission.FunctionReferenceTypeFunctionName,
Name: fnName,
},
},
}
_, err = client.HTTPTriggerCreate(ht)
checkErr(err, "create HTTP trigger")
fmt.Printf("route created: %v %v -> %v\n", method, triggerUrl, fnName)
return err
}
func fnGet(c *cli.Context) error {
client := getClient(c.GlobalString("server"))
fnName := c.String("name")
if len(fnName) == 0 {
fatal("Need name of function, use --name")
}
m := &api.ObjectMeta{
Name: fnName,
Namespace: api.NamespaceDefault,
}
fn, err := client.FunctionGet(m)
checkErr(err, "get function")
pkg, err := client.PackageGet(&api.ObjectMeta{
Name: fn.Spec.Package.PackageRef.Name,
Namespace: fn.Spec.Package.PackageRef.Namespace,
})
checkErr(err, "get package")
os.Stdout.Write(pkg.Spec.Deployment.Literal)
return err
}
func fnGetMeta(c *cli.Context) error {
client := getClient(c.GlobalString("server"))
fnName := c.String("name")
if len(fnName) == 0 {
fatal("Need name of function, use --name")
}
m := &api.ObjectMeta{
Name: fnName,
Namespace: api.NamespaceDefault,
}
f, err := client.FunctionGet(m)
checkErr(err, "get function")
w := tabwriter.NewWriter(os.Stdout, 0, 0, 1, ' ', 0)
fmt.Fprintf(w, "%v\t%v\t%v\n", "NAME", "UID", "ENV")
fmt.Fprintf(w, "%v\t%v\t%v\n",
f.Metadata.Name, f.Metadata.UID, f.Spec.Environment.Name)
w.Flush()
return err
}
func fnUpdate(c *cli.Context) error {
client := getClient(c.GlobalString("server"))
fnName := c.String("name")
if len(fnName) == 0 {
fatal("Need name of function, use --name")
}
function, err := client.FunctionGet(&api.ObjectMeta{
Name: fnName,
Namespace: api.NamespaceDefault,
})
checkErr(err, fmt.Sprintf("read function '%v'", fnName))
envName := c.String("env")
deployPkgName := c.String("code")
if len(deployPkgName) == 0 {
deployPkgName = c.String("package")
}
srcPkgName := c.String("srcpkg")
if len(envName) == 0 && len(deployPkgName) == 0 && len(srcPkgName) == 0 {
fatal("Need --env or --code or --package or --srcpkg argument.")
}
if len(deployPkgName) != 0 || len(srcPkgName) != 0 {
// get existing package
pkg, err := client.PackageGet(&api.ObjectMeta{
Name: function.Spec.Package.PackageRef.Name,
Namespace: function.Spec.Package.PackageRef.Namespace,
})
// update package spec
if len(srcPkgName) > 0 {
archive := createArchive(client, srcPkgName)
pkg.Spec.Source = *archive
}
if len(deployPkgName) > 0 {
archive := createArchive(client, deployPkgName)
pkg.Spec.Deployment = *archive
}
// updage package object
newpkg, err := client.PackageUpdate(pkg)
checkErr(err, "update package")
// update function spec with resource version
function.Spec.Package.PackageRef.ResourceVersion = newpkg.ResourceVersion
}
if len(envName) > 0 {
function.Spec.Environment.Name = envName
}
_, err = client.FunctionUpdate(function)
checkErr(err, "update function")
fmt.Printf("function '%v' updated\n", fnName)
return err
}
func fnDelete(c *cli.Context) error {
client := getClient(c.GlobalString("server"))
fnName := c.String("name")
if len(fnName) == 0 {
fatal("Need name of function, use --name")
}
m := &api.ObjectMeta{
Name: fnName,
Namespace: api.NamespaceDefault,
}
err := client.FunctionDelete(m)
checkErr(err, fmt.Sprintf("delete function '%v'", fnName))
fmt.Printf("function '%v' deleted\n", fnName)
return err
}
func fnList(c *cli.Context) error {
client := getClient(c.GlobalString("server"))
fns, err := client.FunctionList()
checkErr(err, "list functions")
w := tabwriter.NewWriter(os.Stdout, 0, 0, 1, ' ', 0)
fmt.Fprintf(w, "%v\t%v\t%v\n", "NAME", "UID", "ENV")
for _, f := range fns {
fmt.Fprintf(w, "%v\t%v\t%v\n",
f.Metadata.Name, f.Metadata.UID, f.Spec.Environment.Name)
}
w.Flush()
return err
}
func fnLogs(c *cli.Context) error {
client := getClient(c.GlobalString("server"))
fnName := c.String("name")
if len(fnName) == 0 {
fatal("Need name of function, use --name")
}
dbType := c.String("dbtype")
if len(dbType) == 0 {
dbType = logdb.INFLUXDB
}
fnPod := c.String("pod")
m := &api.ObjectMeta{
Name: fnName,
Namespace: api.NamespaceDefault,
}
f, err := client.FunctionGet(m)
checkErr(err, "get function")
// request the controller to establish a proxy server to the database.
logDB, err := logdb.GetLogDB(dbType, c.GlobalString("server"))
if err != nil {
fatal("failed to connect log database")
}
requestChan := make(chan struct{})
responseChan := make(chan struct{})
ctx := context.Background()
go func(ctx context.Context, requestChan, responseChan chan struct{}) {
t := time.Unix(0, 0*int64(time.Millisecond))
for {
select {
case <-requestChan:
logFilter := logdb.LogFilter{
Pod: fnPod,
Function: f.Metadata.Name,
FuncUid: string(f.Metadata.UID),
Since: t,
}
logEntries, err := logDB.GetLogs(logFilter)
if err != nil {
fatal("failed to query logs")
}
for _, logEntry := range logEntries {
if c.Bool("d") {
fmt.Printf("Timestamp: %s\nNamespace: %s\nFunction Name: %s\nFunction ID: %s\nPod: %s\nContainer: %s\nStream: %s\nLog: %s\n---\n",
logEntry.Timestamp, logEntry.Namespace, logEntry.FuncName, logEntry.FuncUid, logEntry.Pod, logEntry.Container, logEntry.Stream, logEntry.Message)
} else {
fmt.Printf("[%s] %s\n", logEntry.Timestamp, logEntry.Message)
}
t = logEntry.Timestamp
}
responseChan <- struct{}{}
case <-ctx.Done():
return
}
}
}(ctx, requestChan, responseChan)
for {
requestChan <- struct{}{}
<-responseChan
if !c.Bool("f") {
ctx.Done()
return nil
}
time.Sleep(1 * time.Second)
}
}
func fnPods(c *cli.Context) error {
client := getClient(c.GlobalString("server"))
fnName := c.String("name")
if len(fnName) == 0 {
fatal("Need name of function, use --name")
}
dbType := c.String("dbtype")
if len(dbType) == 0 {
dbType = logdb.INFLUXDB
}
m := &api.ObjectMeta{Name: fnName}
f, err := client.FunctionGet(m)
checkErr(err, "get function")
// client first sends db query to the controller, then the controller
// will establish a proxy server that bridges the client and the database.
logDB, err := logdb.GetLogDB(dbType, c.GlobalString("server"))
if err != nil {
fatal("failed to connect log database")
}
logFilter := logdb.LogFilter{
Function: f.Metadata.Name,
FuncUid: string(f.Metadata.UID),
}
pods, err := logDB.GetPods(logFilter)
if err != nil {
fatal("failed to get pods of function")
return err
}
fmt.Printf("NAME\t\n")
for _, pod := range pods {
fmt.Println(pod)
}
return err
}