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util.go
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util.go
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package cli53
import (
"context"
"fmt"
"math/rand"
"os"
"regexp"
"strconv"
"strings"
"sync"
"time"
"unicode"
"github.com/urfave/cli/v2"
"github.com/aws/aws-sdk-go/aws"
"github.com/aws/aws-sdk-go/aws/awserr"
"github.com/aws/aws-sdk-go/aws/credentials/stscreds"
"github.com/aws/aws-sdk-go/aws/session"
"github.com/aws/aws-sdk-go/service/route53"
)
// Qualify names, if relative
func qualifyName(name, origin string) string {
if name == "" || name == "@" {
// root
return origin
} else if !strings.HasSuffix(name, ".") {
// unqualified
return name + "." + origin
} else {
// qualified
return name
}
}
func getConfig(c *cli.Context) (*aws.Config, error) {
debug := c.Bool("debug")
endpoint := c.String("endpoint-url")
region := os.Getenv("AWS_REGION")
// SDK requires region to be set when endpoint-url is set
if endpoint != "" && region == "" {
return nil, cli.NewExitError("AWS_REGION must be set when using --endpoint-url", 1)
}
config := aws.Config{
Endpoint: &endpoint,
Region: ®ion,
Logger: aws.LoggerFunc(func(args ...interface{}) {
fmt.Fprintln(os.Stderr, args...)
}),
}
// ensures throttled requests are retried
config.MaxRetries = aws.Int(100)
if debug {
config.LogLevel = aws.LogLevel(aws.LogDebug)
}
return &config, nil
}
func getService(c *cli.Context) (*route53.Route53, error) {
config, err := getConfig(c)
if err != nil {
return nil, err
}
options := session.Options{
SharedConfigState: session.SharedConfigEnable,
Config: *config,
Profile: c.String("profile"),
}
sess, err := session.NewSessionWithOptions(options)
if err != nil {
return nil, err
}
roleARN := c.String("role-arn")
if roleARN != "" {
roleCreds := stscreds.NewCredentials(sess, roleARN)
if err != nil {
return nil, err
}
config.Credentials = roleCreds
}
return route53.New(sess, config), nil
}
func fatalIfErr(err error) {
if err != nil {
errorAndExit(fmt.Sprint(err))
}
}
func errorAndExit(msg string) {
fmt.Fprintln(os.Stderr, "Error: "+msg)
os.Exit(1)
}
var seeded sync.Once
func uniqueReference() string {
seeded.Do(func() {
rand.Seed(time.Now().UnixNano())
})
return fmt.Sprintf("%0x", rand.Int())
}
var unescaper = strings.NewReplacer(`\057`, "/", `\052`, "*")
func zoneName(s string) string {
return unescaper.Replace(strings.TrimRight(s, "."))
}
var reZoneId = regexp.MustCompile("^(/hostedzone/)?Z[A-Z0-9]{9,}$")
func isZoneId(s string) bool {
return reZoneId.MatchString(s)
}
func lookupZone(ctx context.Context, nameOrId string) *route53.HostedZone {
if isZoneId(nameOrId) {
// lookup by id
id := nameOrId
if !strings.HasPrefix(nameOrId, "/hostedzone/") {
id = "/hostedzone/" + id
}
req := route53.GetHostedZoneInput{
Id: aws.String(id),
}
resp, err := r53.GetHostedZoneWithContext(ctx, &req)
if err, ok := err.(awserr.Error); ok && err.Code() == "NoSuchHostedZone" {
errorAndExit(fmt.Sprintf("Zone '%s' not found", nameOrId))
}
fatalIfErr(err)
return resp.HostedZone
} else {
// lookup by name
matches := []route53.HostedZone{}
req := route53.ListHostedZonesByNameInput{
DNSName: aws.String(nameOrId),
}
resp, err := r53.ListHostedZonesByNameWithContext(ctx, &req)
fatalIfErr(err)
for _, zone := range resp.HostedZones {
if zoneName(*zone.Name) == zoneName(nameOrId) {
matches = append(matches, *zone)
}
}
switch len(matches) {
case 0:
errorAndExit(fmt.Sprintf("Zone '%s' not found", nameOrId))
case 1:
return &matches[0]
default:
errorAndExit("Multiple zones match - you will need to use Zone ID to uniquely identify the zone")
}
}
return nil
}
func waitForChange(ctx context.Context, change *route53.ChangeInfo) {
fmt.Printf("Waiting for sync")
for {
req := route53.GetChangeInput{Id: change.Id}
resp, err := r53.GetChangeWithContext(ctx, &req)
fatalIfErr(err)
if *resp.ChangeInfo.Status == "INSYNC" {
fmt.Println("\nCompleted")
break
} else if *resp.ChangeInfo.Status == "PENDING" {
fmt.Printf(".")
} else {
fmt.Printf("\nFailed: %s\n", *resp.ChangeInfo.Status)
break
}
time.Sleep(1 * time.Second)
}
}
// Use shortened form of name with origin removed/abbreviated.
func shortenName(name, origin string) string {
if name == origin {
return "@"
}
return strings.TrimSuffix(name, "."+origin)
}
var reQuotedValue = regexp.MustCompile(`"((?:\\"|[^"])*)"`)
var reBackslashed = regexp.MustCompile(`\\(.)`)
func splitValues(s string) []string {
ret := []string{}
for _, m := range reQuotedValue.FindAllStringSubmatch(s, -1) {
val := reBackslashed.ReplaceAllString(m[1], "$1")
ret = append(ret, val)
}
return ret
}
var quoter = strings.NewReplacer(`\`, `\\`, `"`, `\"`)
func quote(s string) string {
return `"` + quoter.Replace(s) + `"`
}
type KeyValues []interface{}
func (kvs KeyValues) GetOptString(key string) *string {
for i := 0; i < len(kvs); i += 2 {
if kvs[i] == key {
if value, ok := kvs[i+1].(string); ok {
return &value
}
}
}
return nil
}
func (kvs KeyValues) GetString(key string) string {
val := kvs.GetOptString(key)
if val != nil {
return *val
}
return ""
}
func (kvs KeyValues) GetInt(key string) int {
for i := 0; i < len(kvs); i += 2 {
if kvs[i] == key {
if value, ok := kvs[i+1].(int); ok {
return value
}
}
}
return 0
}
func (kvs KeyValues) String() string {
var ret string
for i := 0; i < len(kvs); i += 2 {
key := kvs[i]
value := kvs[i+1]
if ret != "" {
ret += " "
}
switch value := value.(type) {
case string:
ret += fmt.Sprintf("%s=%s", key, quote(value))
case int64, int:
ret += fmt.Sprintf("%s=%v", key, value)
}
}
return ret
}
func ParseKeyValues(input string) (result KeyValues, err error) {
// result = append(result, "a", 2)
l := lex(input)
for {
// alpha key
key := l.acceptRun(unicode.IsLetter)
if key == "" {
err = l.Error("Expected key")
return
}
// equals separator
if !l.accept("=") {
err = l.Error("Expected =")
return
}
// value (string or int)
var value interface{}
if l.accept(`"`) {
// quoted string
str := ""
for {
if l.eof() {
err = l.Error("Unterminated quoted string")
return
} else if l.accept(`\`) {
str += l.acceptAny()
} else if l.accept(`"`) {
break
} else {
str += l.acceptAny()
}
}
value = str
} else if num := l.acceptRun(unicode.IsDigit); num != "" {
value, err = strconv.Atoi(num)
if err != nil {
return
}
} else {
err = l.Error("Unexpected token")
return
}
result = append(result, key, value)
if l.eof() {
break
}
// whitespace between multiple key values
if l.acceptRun(unicode.IsSpace) == "" {
err = l.Error("Expected whitespace")
return
}
}
return
}