This commit moves dependency management to use godep and the
new experimental vendoring support in Go 1.5.

NOTE: You must set `GO15VENDOREXPERIMENT` in your bash environment
for vendoring to work properly! See the updated `README` for details.
This commit is contained in:
Ben Johnson 2015-09-03 13:52:45 -06:00
parent 6b2b2672d7
commit 1d1cb134ec
444 changed files with 115951 additions and 131 deletions

76
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@ -0,0 +1,76 @@
{
"ImportPath": "github.com/umbel/pilosa",
"GoVersion": "go1.5",
"Packages": [
"./..."
],
"Deps": [
{
"ImportPath": "github.com/BurntSushi/toml",
"Comment": "v0.1.0-21-g056c9bc",
"Rev": "056c9bc7be7190eaa7715723883caffa5f8fa3e4"
},
{
"ImportPath": "github.com/bitly/go-notify",
"Rev": "0a148b8111d688ba7550fc7119fe0d5d8e650838"
},
{
"ImportPath": "github.com/cactus/go-statsd-client/statsd",
"Rev": "3999011ef0451eb805b0fa31f98cfb9261bd71be"
},
{
"ImportPath": "github.com/cihub/seelog",
"Comment": "go1.1-81-gc510775",
"Rev": "c510775bb50d98213cfafca75a4bc5e3fddc8d8f"
},
{
"ImportPath": "github.com/coreos/go-etcd/etcd",
"Rev": "1e26d8ee84cf9b1000d2af8acfb45b2521f49be5"
},
{
"ImportPath": "github.com/davecgh/go-spew/spew",
"Rev": "e762b3d1320b76030bd7f6cc2bfc3d9acce874c0"
},
{
"ImportPath": "github.com/gocql/gocql",
"Comment": "1st_gen_framing-221-gf8fb76b",
"Rev": "f8fb76bb772442ea938e4be46ab1666e542411a5"
},
{
"ImportPath": "github.com/golang/groupcache/lru",
"Rev": "d781998583680cda80cf61e0b37dd0cd8da2eb52"
},
{
"ImportPath": "github.com/golang/snappy",
"Rev": "723cc1e459b8eea2dea4583200fd60757d40097a"
},
{
"ImportPath": "github.com/gorilla/websocket",
"Rev": "92334662baa9cbebc2e6e68b8d56bc1233f85a4c"
},
{
"ImportPath": "github.com/kr/s3",
"Rev": "c070c8f9a8f0032d48f0d2a77d4e382788bd8a1d"
},
{
"ImportPath": "github.com/robertkrimen/otto",
"Rev": "f9e07770bd9b5142de517b05a85ffbb42d1895da"
},
{
"ImportPath": "github.com/stathat/consistent",
"Rev": "0262985f12333852b6423025aa3ca315af473a4a"
},
{
"ImportPath": "github.com/syndtr/goleveldb/leveldb",
"Rev": "183614d6b32571e867df4cf086f5480ceefbdfac"
},
{
"ImportPath": "github.com/yasushi-saito/rbtree",
"Rev": "571e2538414bf914c7e2909b61217b4e3e5508f4"
},
{
"ImportPath": "gopkg.in/inf.v0",
"Rev": "c85f1217d51339c0fa3a498cc8b2075de695dae6"
}
]
}

5
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@ -0,0 +1,5 @@
This directory tree is generated automatically by godep.
Please do not edit.
See https://github.com/tools/godep for more information.

5
Makefile Normal file
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@ -0,0 +1,5 @@
default:
# Temporary workaround to avoid testing vendor directory.
test:
go test $(go list ./... | grep -v /vendor/)

View file

@ -5,25 +5,19 @@ Pilosa is a bitmap index database.
## Getting Started
To download the source, run `go get`:
Pilosa uses the new Go 1.5 vendoring experiment. To enable this, you'll need
to export an environment variable in your `.profile`:
```sh
export GO15VENDOREXPERIMENT=1
```
Then you can download the source by running `go get`:
```sh
$ go get github.com/umbel/pilosa
```
You can update the dependencies to specific versions using [`depman`][depman]:
```sh
$ go get github.com/vube/depman
```
And then run `depman` from the project directory:
```sh
$ cd $GOPATH/src/github.com/umbel/pilosa
$ depman
```
Now you can install the `pilosa` binary:
```sh
@ -40,7 +34,7 @@ $ etcd
Now run `pilosa` with the default configuration:
```sh
PILOSA_CONFIG=default.yaml pilosa
pilosa
```
This setup assumes that cassandra and etcd are running locally and that
@ -48,8 +42,35 @@ cassandra keyspace pilosa has been setup as describe in the file
`index/storage_cass.go`.
If you don't want backend storage you can comment out storage_backend in the
yaml file and it will just operate out of memory.
config file and it will just operate out of memory.
[etcd]: https://github.com/coreos/etcd
[depman]: https://github.com/vube/depman
## Development
### Updating dependencies
To update dependencies, you'll need to install [godep][]:
```sh
$ go get -u github.com/tools/godep
```
Then save the dependencies in your project:
```sh
$ godep save ./...
```
*Make sure you have set the `GO15VENDOREXPERIMENT` environment variable!*
[godep]: https://github.com/tools/godep
### Running tests
Because of a bug in Go 1.5, you'll need to run `make test` to exclude tests
the the `vendor/` directory.

View file

@ -9,7 +9,6 @@ import (
"time"
log "github.com/cihub/seelog"
_ "github.com/go-sql-driver/mysql"
"github.com/umbel/pilosa/util"
)

View file

@ -12,7 +12,6 @@ import (
log "github.com/cihub/seelog"
"github.com/coreos/go-etcd/etcd"
"github.com/kr/s3/s3util"
"github.com/mitchellh/panicwrap"
"github.com/umbel/pilosa"
"github.com/umbel/pilosa/core"
"github.com/umbel/pilosa/db"
@ -52,16 +51,6 @@ func NewMain() *Main {
func (m *Main) Run(args ...string) error {
defer log.Flush()
// Handle panics with a log entry and process exit.
if code, err := panicwrap.BasicWrap(func(output string) {
log.Critical("The child panicked:\n\n", output)
os.Exit(1)
}); err != nil {
panic(err)
} else if code >= 0 {
os.Exit(code)
}
// Parse command line arguments.
opt, err := m.ParseFlags(args)
if err != nil {

102
deps.json
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@ -1,102 +0,0 @@
{
"consistent": {
"repo": "github.com/stathat/consistent",
"version": "0262985f12333852b6423025aa3ca315af473a4a",
"type": "git"
},
"etcd": {
"repo": "github.com/coreos/go-etcd/etcd",
"version": "9847b93751a5fbaf227b893d172cee0104ac6427",
"type": "git"
},
"gkvlite": {
"repo": "github.com/steveyen/gkvlite",
"version": "master",
"type": "git"
},
"gocql": {
"repo": "github.com/gocql/gocql",
"version": "f8fb76bb772442ea938e4be46ab1666e542411a5",
"type": "git"
},
"goleveldb": {
"repo": "github.com/syndtr/goleveldb/leveldb",
"version": "183614d6b32571e867df4cf086f5480ceefbdfac",
"type": "git"
},
"google-crypto": {
"repo": "code.google.com/p/go.crypto/ssh",
"version": "7aa593ce8cea",
"type": "hg"
},
"goyaml": {
"repo": "launchpad.net/goyaml",
"version": "50",
"type": "bzr"
},
"log": {
"repo": "github.com/coreos/go-log/log",
"version": "70d039bee4b0e389e5be560491d8291708506f59",
"type": "git"
},
"lru": {
"repo": "github.com/golang/groupcache/lru",
"version": "d781998583680cda80cf61e0b37dd0cd8da2eb52",
"type": "git"
},
"mysql": {
"repo": "github.com/go-sql-driver/mysql",
"version": "master",
"type": "git"
},
"notify": {
"repo": "github.com/bitly/go-notify",
"version": "0a148b8111d688ba7550fc7119fe0d5d8e650838",
"type": "git"
},
"otto": {
"repo": "github.com/robertkrimen/otto",
"version": "f9e07770bd9b5142de517b05a85ffbb42d1895da",
"type": "git"
},
"panicwrapper": {
"repo": "github.com/mitchellh/panicwrap",
"version": "master",
"type": "git"
},
"rbtree": {
"repo": "github.com/yasushi-saito/rbtree",
"version": "571e2538414bf914c7e2909b61217b4e3e5508f4",
"type": "git"
},
"s3": {
"repo": "github.com/kr/s3/s3util",
"version": "master",
"type": "git"
},
"seelog": {
"repo": "github.com/cihub/seelog",
"version": "master",
"type": "git"
},
"spew": {
"repo": "github.com/davecgh/go-spew/spew",
"version": "e762b3d1320b76030bd7f6cc2bfc3d9acce874c0",
"type": "git"
},
"statsd": {
"repo": "github.com/cactus/go-statsd-client/statsd",
"version": "3999011ef0451eb805b0fa31f98cfb9261bd71be",
"type": "git"
},
"toml": {
"repo": "github.com/BurntSushi/toml",
"version": "056c9bc7be7190eaa7715723883caffa5f8fa3e4",
"type": "git"
},
"websocket": {
"repo": "github.com/gorilla/websocket",
"version": "92334662baa9cbebc2e6e68b8d56bc1233f85a4c",
"type": "git"
}
}

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@ -0,0 +1,5 @@
TAGS
tags
.*.swp
tomlcheck/tomlcheck
toml.test

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vendor/github.com/BurntSushi/toml/.travis.yml generated vendored Normal file
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@ -0,0 +1,12 @@
language: go
go:
- 1.1
- 1.2
- tip
install:
- go install ./...
- go get github.com/BurntSushi/toml-test
script:
- export PATH="$PATH:$HOME/gopath/bin"
- make test

3
vendor/github.com/BurntSushi/toml/COMPATIBLE generated vendored Normal file
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@ -0,0 +1,3 @@
Compatible with TOML version
[v0.2.0](https://github.com/mojombo/toml/blob/master/versions/toml-v0.2.0.md)

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vendor/github.com/BurntSushi/toml/COPYING generated vendored Normal file
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@ -0,0 +1,14 @@
DO WHAT THE FUCK YOU WANT TO PUBLIC LICENSE
Version 2, December 2004
Copyright (C) 2004 Sam Hocevar <sam@hocevar.net>
Everyone is permitted to copy and distribute verbatim or modified
copies of this license document, and changing it is allowed as long
as the name is changed.
DO WHAT THE FUCK YOU WANT TO PUBLIC LICENSE
TERMS AND CONDITIONS FOR COPYING, DISTRIBUTION AND MODIFICATION
0. You just DO WHAT THE FUCK YOU WANT TO.

19
vendor/github.com/BurntSushi/toml/Makefile generated vendored Normal file
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@ -0,0 +1,19 @@
install:
go install ./...
test: install
go test -v
toml-test toml-test-decoder
toml-test -encoder toml-test-encoder
fmt:
gofmt -w *.go */*.go
colcheck *.go */*.go
tags:
find ./ -name '*.go' -print0 | xargs -0 gotags > TAGS
push:
git push origin master
git push github master

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@ -0,0 +1,220 @@
## TOML parser and encoder for Go with reflection
TOML stands for Tom's Obvious, Minimal Language. This Go package provides a
reflection interface similar to Go's standard library `json` and `xml`
packages. This package also supports the `encoding.TextUnmarshaler` and
`encoding.TextMarshaler` interfaces so that you can define custom data
representations. (There is an example of this below.)
Spec: https://github.com/mojombo/toml
Compatible with TOML version
[v0.2.0](https://github.com/toml-lang/toml/blob/master/versions/en/toml-v0.2.0.md)
Documentation: http://godoc.org/github.com/BurntSushi/toml
Installation:
```bash
go get github.com/BurntSushi/toml
```
Try the toml validator:
```bash
go get github.com/BurntSushi/toml/cmd/tomlv
tomlv some-toml-file.toml
```
[![Build status](https://api.travis-ci.org/BurntSushi/toml.png)](https://travis-ci.org/BurntSushi/toml)
### Testing
This package passes all tests in
[toml-test](https://github.com/BurntSushi/toml-test) for both the decoder
and the encoder.
### Examples
This package works similarly to how the Go standard library handles `XML`
and `JSON`. Namely, data is loaded into Go values via reflection.
For the simplest example, consider some TOML file as just a list of keys
and values:
```toml
Age = 25
Cats = [ "Cauchy", "Plato" ]
Pi = 3.14
Perfection = [ 6, 28, 496, 8128 ]
DOB = 1987-07-05T05:45:00Z
```
Which could be defined in Go as:
```go
type Config struct {
Age int
Cats []string
Pi float64
Perfection []int
DOB time.Time // requires `import time`
}
```
And then decoded with:
```go
var conf Config
if _, err := toml.Decode(tomlData, &conf); err != nil {
// handle error
}
```
You can also use struct tags if your struct field name doesn't map to a TOML
key value directly:
```toml
some_key_NAME = "wat"
```
```go
type TOML struct {
ObscureKey string `toml:"some_key_NAME"`
}
```
### Using the `encoding.TextUnmarshaler` interface
Here's an example that automatically parses duration strings into
`time.Duration` values:
```toml
[[song]]
name = "Thunder Road"
duration = "4m49s"
[[song]]
name = "Stairway to Heaven"
duration = "8m03s"
```
Which can be decoded with:
```go
type song struct {
Name string
Duration duration
}
type songs struct {
Song []song
}
var favorites songs
if _, err := toml.Decode(blob, &favorites); err != nil {
log.Fatal(err)
}
for _, s := range favorites.Song {
fmt.Printf("%s (%s)\n", s.Name, s.Duration)
}
```
And you'll also need a `duration` type that satisfies the
`encoding.TextUnmarshaler` interface:
```go
type duration struct {
time.Duration
}
func (d *duration) UnmarshalText(text []byte) error {
var err error
d.Duration, err = time.ParseDuration(string(text))
return err
}
```
### More complex usage
Here's an example of how to load the example from the official spec page:
```toml
# This is a TOML document. Boom.
title = "TOML Example"
[owner]
name = "Tom Preston-Werner"
organization = "GitHub"
bio = "GitHub Cofounder & CEO\nLikes tater tots and beer."
dob = 1979-05-27T07:32:00Z # First class dates? Why not?
[database]
server = "192.168.1.1"
ports = [ 8001, 8001, 8002 ]
connection_max = 5000
enabled = true
[servers]
# You can indent as you please. Tabs or spaces. TOML don't care.
[servers.alpha]
ip = "10.0.0.1"
dc = "eqdc10"
[servers.beta]
ip = "10.0.0.2"
dc = "eqdc10"
[clients]
data = [ ["gamma", "delta"], [1, 2] ] # just an update to make sure parsers support it
# Line breaks are OK when inside arrays
hosts = [
"alpha",
"omega"
]
```
And the corresponding Go types are:
```go
type tomlConfig struct {
Title string
Owner ownerInfo
DB database `toml:"database"`
Servers map[string]server
Clients clients
}
type ownerInfo struct {
Name string
Org string `toml:"organization"`
Bio string
DOB time.Time
}
type database struct {
Server string
Ports []int
ConnMax int `toml:"connection_max"`
Enabled bool
}
type server struct {
IP string
DC string
}
type clients struct {
Data [][]interface{}
Hosts []string
}
```
Note that a case insensitive match will be tried if an exact match can't be
found.
A working example of the above can be found in `_examples/example.{go,toml}`.

View file

@ -0,0 +1,14 @@
DO WHAT THE FUCK YOU WANT TO PUBLIC LICENSE
Version 2, December 2004
Copyright (C) 2004 Sam Hocevar <sam@hocevar.net>
Everyone is permitted to copy and distribute verbatim or modified
copies of this license document, and changing it is allowed as long
as the name is changed.
DO WHAT THE FUCK YOU WANT TO PUBLIC LICENSE
TERMS AND CONDITIONS FOR COPYING, DISTRIBUTION AND MODIFICATION
0. You just DO WHAT THE FUCK YOU WANT TO.

View file

@ -0,0 +1,14 @@
# Implements the TOML test suite interface
This is an implementation of the interface expected by
[toml-test](https://github.com/BurntSushi/toml-test) for my
[toml parser written in Go](https://github.com/BurntSushi/toml).
In particular, it maps TOML data on `stdin` to a JSON format on `stdout`.
Compatible with TOML version
[v0.2.0](https://github.com/mojombo/toml/blob/master/versions/toml-v0.2.0.md)
Compatible with `toml-test` version
[v0.2.0](https://github.com/BurntSushi/toml-test/tree/v0.2.0)

View file

@ -0,0 +1,90 @@
// Command toml-test-decoder satisfies the toml-test interface for testing
// TOML decoders. Namely, it accepts TOML on stdin and outputs JSON on stdout.
package main
import (
"encoding/json"
"flag"
"fmt"
"log"
"os"
"path"
"time"
"github.com/BurntSushi/toml"
)
func init() {
log.SetFlags(0)
flag.Usage = usage
flag.Parse()
}
func usage() {
log.Printf("Usage: %s < toml-file\n", path.Base(os.Args[0]))
flag.PrintDefaults()
os.Exit(1)
}
func main() {
if flag.NArg() != 0 {
flag.Usage()
}
var tmp interface{}
if _, err := toml.DecodeReader(os.Stdin, &tmp); err != nil {
log.Fatalf("Error decoding TOML: %s", err)
}
typedTmp := translate(tmp)
if err := json.NewEncoder(os.Stdout).Encode(typedTmp); err != nil {
log.Fatalf("Error encoding JSON: %s", err)
}
}
func translate(tomlData interface{}) interface{} {
switch orig := tomlData.(type) {
case map[string]interface{}:
typed := make(map[string]interface{}, len(orig))
for k, v := range orig {
typed[k] = translate(v)
}
return typed
case []map[string]interface{}:
typed := make([]map[string]interface{}, len(orig))
for i, v := range orig {
typed[i] = translate(v).(map[string]interface{})
}
return typed
case []interface{}:
typed := make([]interface{}, len(orig))
for i, v := range orig {
typed[i] = translate(v)
}
// We don't really need to tag arrays, but let's be future proof.
// (If TOML ever supports tuples, we'll need this.)
return tag("array", typed)
case time.Time:
return tag("datetime", orig.Format("2006-01-02T15:04:05Z"))
case bool:
return tag("bool", fmt.Sprintf("%v", orig))
case int64:
return tag("integer", fmt.Sprintf("%d", orig))
case float64:
return tag("float", fmt.Sprintf("%v", orig))
case string:
return tag("string", orig)
}
panic(fmt.Sprintf("Unknown type: %T", tomlData))
}
func tag(typeName string, data interface{}) map[string]interface{} {
return map[string]interface{}{
"type": typeName,
"value": data,
}
}

View file

@ -0,0 +1,14 @@
DO WHAT THE FUCK YOU WANT TO PUBLIC LICENSE
Version 2, December 2004
Copyright (C) 2004 Sam Hocevar <sam@hocevar.net>
Everyone is permitted to copy and distribute verbatim or modified
copies of this license document, and changing it is allowed as long
as the name is changed.
DO WHAT THE FUCK YOU WANT TO PUBLIC LICENSE
TERMS AND CONDITIONS FOR COPYING, DISTRIBUTION AND MODIFICATION
0. You just DO WHAT THE FUCK YOU WANT TO.

View file

@ -0,0 +1,14 @@
# Implements the TOML test suite interface for TOML encoders
This is an implementation of the interface expected by
[toml-test](https://github.com/BurntSushi/toml-test) for the
[TOML encoder](https://github.com/BurntSushi/toml).
In particular, it maps JSON data on `stdin` to a TOML format on `stdout`.
Compatible with TOML version
[v0.2.0](https://github.com/mojombo/toml/blob/master/versions/toml-v0.2.0.md)
Compatible with `toml-test` version
[v0.2.0](https://github.com/BurntSushi/toml-test/tree/v0.2.0)

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@ -0,0 +1,131 @@
// Command toml-test-encoder satisfies the toml-test interface for testing
// TOML encoders. Namely, it accepts JSON on stdin and outputs TOML on stdout.
package main
import (
"encoding/json"
"flag"
"log"
"os"
"path"
"strconv"
"time"
"github.com/BurntSushi/toml"
)
func init() {
log.SetFlags(0)
flag.Usage = usage
flag.Parse()
}
func usage() {
log.Printf("Usage: %s < json-file\n", path.Base(os.Args[0]))
flag.PrintDefaults()
os.Exit(1)
}
func main() {
if flag.NArg() != 0 {
flag.Usage()
}
var tmp interface{}
if err := json.NewDecoder(os.Stdin).Decode(&tmp); err != nil {
log.Fatalf("Error decoding JSON: %s", err)
}
tomlData := translate(tmp)
if err := toml.NewEncoder(os.Stdout).Encode(tomlData); err != nil {
log.Fatalf("Error encoding TOML: %s", err)
}
}
func translate(typedJson interface{}) interface{} {
switch v := typedJson.(type) {
case map[string]interface{}:
if len(v) == 2 && in("type", v) && in("value", v) {
return untag(v)
}
m := make(map[string]interface{}, len(v))
for k, v2 := range v {
m[k] = translate(v2)
}
return m
case []interface{}:
tabArray := make([]map[string]interface{}, len(v))
for i := range v {
if m, ok := translate(v[i]).(map[string]interface{}); ok {
tabArray[i] = m
} else {
log.Fatalf("JSON arrays may only contain objects. This " +
"corresponds to only tables being allowed in " +
"TOML table arrays.")
}
}
return tabArray
}
log.Fatalf("Unrecognized JSON format '%T'.", typedJson)
panic("unreachable")
}
func untag(typed map[string]interface{}) interface{} {
t := typed["type"].(string)
v := typed["value"]
switch t {
case "string":
return v.(string)
case "integer":
v := v.(string)
n, err := strconv.Atoi(v)
if err != nil {
log.Fatalf("Could not parse '%s' as integer: %s", v, err)
}
return n
case "float":
v := v.(string)
f, err := strconv.ParseFloat(v, 64)
if err != nil {
log.Fatalf("Could not parse '%s' as float64: %s", v, err)
}
return f
case "datetime":
v := v.(string)
t, err := time.Parse("2006-01-02T15:04:05Z", v)
if err != nil {
log.Fatalf("Could not parse '%s' as a datetime: %s", v, err)
}
return t
case "bool":
v := v.(string)
switch v {
case "true":
return true
case "false":
return false
}
log.Fatalf("Could not parse '%s' as a boolean.", v)
case "array":
v := v.([]interface{})
array := make([]interface{}, len(v))
for i := range v {
if m, ok := v[i].(map[string]interface{}); ok {
array[i] = untag(m)
} else {
log.Fatalf("Arrays may only contain other arrays or "+
"primitive values, but found a '%T'.", m)
}
}
return array
}
log.Fatalf("Unrecognized tag type '%s'.", t)
panic("unreachable")
}
func in(key string, m map[string]interface{}) bool {
_, ok := m[key]
return ok
}

14
vendor/github.com/BurntSushi/toml/cmd/tomlv/COPYING generated vendored Normal file
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@ -0,0 +1,14 @@
DO WHAT THE FUCK YOU WANT TO PUBLIC LICENSE
Version 2, December 2004
Copyright (C) 2004 Sam Hocevar <sam@hocevar.net>
Everyone is permitted to copy and distribute verbatim or modified
copies of this license document, and changing it is allowed as long
as the name is changed.
DO WHAT THE FUCK YOU WANT TO PUBLIC LICENSE
TERMS AND CONDITIONS FOR COPYING, DISTRIBUTION AND MODIFICATION
0. You just DO WHAT THE FUCK YOU WANT TO.

22
vendor/github.com/BurntSushi/toml/cmd/tomlv/README.md generated vendored Normal file
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# TOML Validator
If Go is installed, it's simple to try it out:
```bash
go get github.com/BurntSushi/toml/cmd/tomlv
tomlv some-toml-file.toml
```
You can see the types of every key in a TOML file with:
```bash
tomlv -types some-toml-file.toml
```
At the moment, only one error message is reported at a time. Error messages
include line numbers. No output means that the files given are valid TOML, or
there is a bug in `tomlv`.
Compatible with TOML version
[v0.1.0](https://github.com/mojombo/toml/blob/master/versions/toml-v0.1.0.md)

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vendor/github.com/BurntSushi/toml/cmd/tomlv/main.go generated vendored Normal file
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// Command tomlv validates TOML documents and prints each key's type.
package main
import (
"flag"
"fmt"
"log"
"os"
"path"
"strings"
"text/tabwriter"
"github.com/BurntSushi/toml"
)
var (
flagTypes = false
)
func init() {
log.SetFlags(0)
flag.BoolVar(&flagTypes, "types", flagTypes,
"When set, the types of every defined key will be shown.")
flag.Usage = usage
flag.Parse()
}
func usage() {
log.Printf("Usage: %s toml-file [ toml-file ... ]\n",
path.Base(os.Args[0]))
flag.PrintDefaults()
os.Exit(1)
}
func main() {
if flag.NArg() < 1 {
flag.Usage()
}
for _, f := range flag.Args() {
var tmp interface{}
md, err := toml.DecodeFile(f, &tmp)
if err != nil {
log.Fatalf("Error in '%s': %s", f, err)
}
if flagTypes {
printTypes(md)
}
}
}
func printTypes(md toml.MetaData) {
tabw := tabwriter.NewWriter(os.Stdout, 0, 0, 2, ' ', 0)
for _, key := range md.Keys() {
fmt.Fprintf(tabw, "%s%s\t%s\n",
strings.Repeat(" ", len(key)-1), key, md.Type(key...))
}
tabw.Flush()
}

492
vendor/github.com/BurntSushi/toml/decode.go generated vendored Normal file
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package toml
import (
"fmt"
"io"
"io/ioutil"
"math"
"reflect"
"strings"
"time"
)
var e = fmt.Errorf
// Unmarshaler is the interface implemented by objects that can unmarshal a
// TOML description of themselves.
type Unmarshaler interface {
UnmarshalTOML(interface{}) error
}
// Unmarshal decodes the contents of `p` in TOML format into a pointer `v`.
func Unmarshal(p []byte, v interface{}) error {
_, err := Decode(string(p), v)
return err
}
// Primitive is a TOML value that hasn't been decoded into a Go value.
// When using the various `Decode*` functions, the type `Primitive` may
// be given to any value, and its decoding will be delayed.
//
// A `Primitive` value can be decoded using the `PrimitiveDecode` function.
//
// The underlying representation of a `Primitive` value is subject to change.
// Do not rely on it.
//
// N.B. Primitive values are still parsed, so using them will only avoid
// the overhead of reflection. They can be useful when you don't know the
// exact type of TOML data until run time.
type Primitive struct {
undecoded interface{}
context Key
}
// DEPRECATED!
//
// Use MetaData.PrimitiveDecode instead.
func PrimitiveDecode(primValue Primitive, v interface{}) error {
md := MetaData{decoded: make(map[string]bool)}
return md.unify(primValue.undecoded, rvalue(v))
}
// PrimitiveDecode is just like the other `Decode*` functions, except it
// decodes a TOML value that has already been parsed. Valid primitive values
// can *only* be obtained from values filled by the decoder functions,
// including this method. (i.e., `v` may contain more `Primitive`
// values.)
//
// Meta data for primitive values is included in the meta data returned by
// the `Decode*` functions with one exception: keys returned by the Undecoded
// method will only reflect keys that were decoded. Namely, any keys hidden
// behind a Primitive will be considered undecoded. Executing this method will
// update the undecoded keys in the meta data. (See the example.)
func (md *MetaData) PrimitiveDecode(primValue Primitive, v interface{}) error {
md.context = primValue.context
defer func() { md.context = nil }()
return md.unify(primValue.undecoded, rvalue(v))
}
// Decode will decode the contents of `data` in TOML format into a pointer
// `v`.
//
// TOML hashes correspond to Go structs or maps. (Dealer's choice. They can be
// used interchangeably.)
//
// TOML arrays of tables correspond to either a slice of structs or a slice
// of maps.
//
// TOML datetimes correspond to Go `time.Time` values.
//
// All other TOML types (float, string, int, bool and array) correspond
// to the obvious Go types.
//
// An exception to the above rules is if a type implements the
// encoding.TextUnmarshaler interface. In this case, any primitive TOML value
// (floats, strings, integers, booleans and datetimes) will be converted to
// a byte string and given to the value's UnmarshalText method. See the
// Unmarshaler example for a demonstration with time duration strings.
//
// Key mapping
//
// TOML keys can map to either keys in a Go map or field names in a Go
// struct. The special `toml` struct tag may be used to map TOML keys to
// struct fields that don't match the key name exactly. (See the example.)
// A case insensitive match to struct names will be tried if an exact match
// can't be found.
//
// The mapping between TOML values and Go values is loose. That is, there
// may exist TOML values that cannot be placed into your representation, and
// there may be parts of your representation that do not correspond to
// TOML values. This loose mapping can be made stricter by using the IsDefined
// and/or Undecoded methods on the MetaData returned.
//
// This decoder will not handle cyclic types. If a cyclic type is passed,
// `Decode` will not terminate.
func Decode(data string, v interface{}) (MetaData, error) {
p, err := parse(data)
if err != nil {
return MetaData{}, err
}
md := MetaData{
p.mapping, p.types, p.ordered,
make(map[string]bool, len(p.ordered)), nil,
}
return md, md.unify(p.mapping, rvalue(v))
}
// DecodeFile is just like Decode, except it will automatically read the
// contents of the file at `fpath` and decode it for you.
func DecodeFile(fpath string, v interface{}) (MetaData, error) {
bs, err := ioutil.ReadFile(fpath)
if err != nil {
return MetaData{}, err
}
return Decode(string(bs), v)
}
// DecodeReader is just like Decode, except it will consume all bytes
// from the reader and decode it for you.
func DecodeReader(r io.Reader, v interface{}) (MetaData, error) {
bs, err := ioutil.ReadAll(r)
if err != nil {
return MetaData{}, err
}
return Decode(string(bs), v)
}
// unify performs a sort of type unification based on the structure of `rv`,
// which is the client representation.
//
// Any type mismatch produces an error. Finding a type that we don't know
// how to handle produces an unsupported type error.
func (md *MetaData) unify(data interface{}, rv reflect.Value) error {
// Special case. Look for a `Primitive` value.
if rv.Type() == reflect.TypeOf((*Primitive)(nil)).Elem() {
// Save the undecoded data and the key context into the primitive
// value.
context := make(Key, len(md.context))
copy(context, md.context)
rv.Set(reflect.ValueOf(Primitive{
undecoded: data,
context: context,
}))
return nil
}
// Special case. Unmarshaler Interface support.
if rv.CanAddr() {
if v, ok := rv.Addr().Interface().(Unmarshaler); ok {
return v.UnmarshalTOML(data)
}
}
// Special case. Handle time.Time values specifically.
// TODO: Remove this code when we decide to drop support for Go 1.1.
// This isn't necessary in Go 1.2 because time.Time satisfies the encoding
// interfaces.
if rv.Type().AssignableTo(rvalue(time.Time{}).Type()) {
return md.unifyDatetime(data, rv)
}
// Special case. Look for a value satisfying the TextUnmarshaler interface.
if v, ok := rv.Interface().(TextUnmarshaler); ok {
return md.unifyText(data, v)
}
// BUG(burntsushi)
// The behavior here is incorrect whenever a Go type satisfies the
// encoding.TextUnmarshaler interface but also corresponds to a TOML
// hash or array. In particular, the unmarshaler should only be applied
// to primitive TOML values. But at this point, it will be applied to
// all kinds of values and produce an incorrect error whenever those values
// are hashes or arrays (including arrays of tables).
k := rv.Kind()
// laziness
if k >= reflect.Int && k <= reflect.Uint64 {
return md.unifyInt(data, rv)
}
switch k {
case reflect.Ptr:
elem := reflect.New(rv.Type().Elem())
err := md.unify(data, reflect.Indirect(elem))
if err != nil {
return err
}
rv.Set(elem)
return nil
case reflect.Struct:
return md.unifyStruct(data, rv)
case reflect.Map:
return md.unifyMap(data, rv)
case reflect.Array:
return md.unifyArray(data, rv)
case reflect.Slice:
return md.unifySlice(data, rv)
case reflect.String:
return md.unifyString(data, rv)
case reflect.Bool:
return md.unifyBool(data, rv)
case reflect.Interface:
// we only support empty interfaces.
if rv.NumMethod() > 0 {
return e("Unsupported type '%s'.", rv.Kind())
}
return md.unifyAnything(data, rv)
case reflect.Float32:
fallthrough
case reflect.Float64:
return md.unifyFloat64(data, rv)
}
return e("Unsupported type '%s'.", rv.Kind())
}
func (md *MetaData) unifyStruct(mapping interface{}, rv reflect.Value) error {
tmap, ok := mapping.(map[string]interface{})
if !ok {
return mismatch(rv, "map", mapping)
}
for key, datum := range tmap {
var f *field
fields := cachedTypeFields(rv.Type())
for i := range fields {
ff := &fields[i]
if ff.name == key {
f = ff
break
}
if f == nil && strings.EqualFold(ff.name, key) {
f = ff
}
}
if f != nil {
subv := rv
for _, i := range f.index {
subv = indirect(subv.Field(i))
}
if isUnifiable(subv) {
md.decoded[md.context.add(key).String()] = true
md.context = append(md.context, key)
if err := md.unify(datum, subv); err != nil {
return e("Type mismatch for '%s.%s': %s",
rv.Type().String(), f.name, err)
}
md.context = md.context[0 : len(md.context)-1]
} else if f.name != "" {
// Bad user! No soup for you!
return e("Field '%s.%s' is unexported, and therefore cannot "+
"be loaded with reflection.", rv.Type().String(), f.name)
}
}
}
return nil
}
func (md *MetaData) unifyMap(mapping interface{}, rv reflect.Value) error {
tmap, ok := mapping.(map[string]interface{})
if !ok {
return badtype("map", mapping)
}
if rv.IsNil() {
rv.Set(reflect.MakeMap(rv.Type()))
}
for k, v := range tmap {
md.decoded[md.context.add(k).String()] = true
md.context = append(md.context, k)
rvkey := indirect(reflect.New(rv.Type().Key()))
rvval := reflect.Indirect(reflect.New(rv.Type().Elem()))
if err := md.unify(v, rvval); err != nil {
return err
}
md.context = md.context[0 : len(md.context)-1]
rvkey.SetString(k)
rv.SetMapIndex(rvkey, rvval)
}
return nil
}
func (md *MetaData) unifyArray(data interface{}, rv reflect.Value) error {
datav := reflect.ValueOf(data)
if datav.Kind() != reflect.Slice {
return badtype("slice", data)
}
sliceLen := datav.Len()
if sliceLen != rv.Len() {
return e("expected array length %d; got TOML array of length %d",
rv.Len(), sliceLen)
}
return md.unifySliceArray(datav, rv)
}
func (md *MetaData) unifySlice(data interface{}, rv reflect.Value) error {
datav := reflect.ValueOf(data)
if datav.Kind() != reflect.Slice {
return badtype("slice", data)
}
sliceLen := datav.Len()
if rv.IsNil() {
rv.Set(reflect.MakeSlice(rv.Type(), sliceLen, sliceLen))
}
return md.unifySliceArray(datav, rv)
}
func (md *MetaData) unifySliceArray(data, rv reflect.Value) error {
sliceLen := data.Len()
for i := 0; i < sliceLen; i++ {
v := data.Index(i).Interface()
sliceval := indirect(rv.Index(i))
if err := md.unify(v, sliceval); err != nil {
return err
}
}
return nil
}
func (md *MetaData) unifyDatetime(data interface{}, rv reflect.Value) error {
if _, ok := data.(time.Time); ok {
rv.Set(reflect.ValueOf(data))
return nil
}
return badtype("time.Time", data)
}
func (md *MetaData) unifyString(data interface{}, rv reflect.Value) error {
if s, ok := data.(string); ok {
rv.SetString(s)
return nil
}
return badtype("string", data)
}
func (md *MetaData) unifyFloat64(data interface{}, rv reflect.Value) error {
if num, ok := data.(float64); ok {
switch rv.Kind() {
case reflect.Float32:
fallthrough
case reflect.Float64:
rv.SetFloat(num)
default:
panic("bug")
}
return nil
}
return badtype("float", data)
}
func (md *MetaData) unifyInt(data interface{}, rv reflect.Value) error {
if num, ok := data.(int64); ok {
if rv.Kind() >= reflect.Int && rv.Kind() <= reflect.Int64 {
switch rv.Kind() {
case reflect.Int, reflect.Int64:
// No bounds checking necessary.
case reflect.Int8:
if num < math.MinInt8 || num > math.MaxInt8 {
return e("Value '%d' is out of range for int8.", num)
}
case reflect.Int16:
if num < math.MinInt16 || num > math.MaxInt16 {
return e("Value '%d' is out of range for int16.", num)
}
case reflect.Int32:
if num < math.MinInt32 || num > math.MaxInt32 {
return e("Value '%d' is out of range for int32.", num)
}
}
rv.SetInt(num)
} else if rv.Kind() >= reflect.Uint && rv.Kind() <= reflect.Uint64 {
unum := uint64(num)
switch rv.Kind() {
case reflect.Uint, reflect.Uint64:
// No bounds checking necessary.
case reflect.Uint8:
if num < 0 || unum > math.MaxUint8 {
return e("Value '%d' is out of range for uint8.", num)
}
case reflect.Uint16:
if num < 0 || unum > math.MaxUint16 {
return e("Value '%d' is out of range for uint16.", num)
}
case reflect.Uint32:
if num < 0 || unum > math.MaxUint32 {
return e("Value '%d' is out of range for uint32.", num)
}
}
rv.SetUint(unum)
} else {
panic("unreachable")
}
return nil
}
return badtype("integer", data)
}
func (md *MetaData) unifyBool(data interface{}, rv reflect.Value) error {
if b, ok := data.(bool); ok {
rv.SetBool(b)
return nil
}
return badtype("boolean", data)
}
func (md *MetaData) unifyAnything(data interface{}, rv reflect.Value) error {
rv.Set(reflect.ValueOf(data))
return nil
}
func (md *MetaData) unifyText(data interface{}, v TextUnmarshaler) error {
var s string
switch sdata := data.(type) {
case TextMarshaler:
text, err := sdata.MarshalText()
if err != nil {
return err
}
s = string(text)
case fmt.Stringer:
s = sdata.String()
case string:
s = sdata
case bool:
s = fmt.Sprintf("%v", sdata)
case int64:
s = fmt.Sprintf("%d", sdata)
case float64:
s = fmt.Sprintf("%f", sdata)
default:
return badtype("primitive (string-like)", data)
}
if err := v.UnmarshalText([]byte(s)); err != nil {
return err
}
return nil
}
// rvalue returns a reflect.Value of `v`. All pointers are resolved.
func rvalue(v interface{}) reflect.Value {
return indirect(reflect.ValueOf(v))
}
// indirect returns the value pointed to by a pointer.
// Pointers are followed until the value is not a pointer.
// New values are allocated for each nil pointer.
//
// An exception to this rule is if the value satisfies an interface of
// interest to us (like encoding.TextUnmarshaler).
func indirect(v reflect.Value) reflect.Value {
if v.Kind() != reflect.Ptr {
if v.CanAddr() {
pv := v.Addr()
if _, ok := pv.Interface().(TextUnmarshaler); ok {
return pv
}
}
return v
}
if v.IsNil() {
v.Set(reflect.New(v.Type().Elem()))
}
return indirect(reflect.Indirect(v))
}
func isUnifiable(rv reflect.Value) bool {
if rv.CanSet() {
return true
}
if _, ok := rv.Interface().(TextUnmarshaler); ok {
return true
}
return false
}
func badtype(expected string, data interface{}) error {
return e("Expected %s but found '%T'.", expected, data)
}
func mismatch(user reflect.Value, expected string, data interface{}) error {
return e("Type mismatch for %s. Expected %s but found '%T'.",
user.Type().String(), expected, data)
}

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package toml
import "strings"
// MetaData allows access to meta information about TOML data that may not
// be inferrable via reflection. In particular, whether a key has been defined
// and the TOML type of a key.
type MetaData struct {
mapping map[string]interface{}
types map[string]tomlType
keys []Key
decoded map[string]bool
context Key // Used only during decoding.
}
// IsDefined returns true if the key given exists in the TOML data. The key
// should be specified hierarchially. e.g.,
//
// // access the TOML key 'a.b.c'
// IsDefined("a", "b", "c")
//
// IsDefined will return false if an empty key given. Keys are case sensitive.
func (md *MetaData) IsDefined(key ...string) bool {
if len(key) == 0 {
return false
}
var hash map[string]interface{}
var ok bool
var hashOrVal interface{} = md.mapping
for _, k := range key {
if hash, ok = hashOrVal.(map[string]interface{}); !ok {
return false
}
if hashOrVal, ok = hash[k]; !ok {
return false
}
}
return true
}
// Type returns a string representation of the type of the key specified.
//
// Type will return the empty string if given an empty key or a key that
// does not exist. Keys are case sensitive.
func (md *MetaData) Type(key ...string) string {
fullkey := strings.Join(key, ".")
if typ, ok := md.types[fullkey]; ok {
return typ.typeString()
}
return ""
}
// Key is the type of any TOML key, including key groups. Use (MetaData).Keys
// to get values of this type.
type Key []string
func (k Key) String() string {
return strings.Join(k, ".")
}
func (k Key) maybeQuotedAll() string {
var ss []string
for i := range k {
ss = append(ss, k.maybeQuoted(i))
}
return strings.Join(ss, ".")
}
func (k Key) maybeQuoted(i int) string {
quote := false
for _, c := range k[i] {
if !isBareKeyChar(c) {
quote = true
break
}
}
if quote {
return "\"" + strings.Replace(k[i], "\"", "\\\"", -1) + "\""
} else {
return k[i]
}
}
func (k Key) add(piece string) Key {
newKey := make(Key, len(k)+1)
copy(newKey, k)
newKey[len(k)] = piece
return newKey
}
// Keys returns a slice of every key in the TOML data, including key groups.
// Each key is itself a slice, where the first element is the top of the
// hierarchy and the last is the most specific.
//
// The list will have the same order as the keys appeared in the TOML data.
//
// All keys returned are non-empty.
func (md *MetaData) Keys() []Key {
return md.keys
}
// Undecoded returns all keys that have not been decoded in the order in which
// they appear in the original TOML document.
//
// This includes keys that haven't been decoded because of a Primitive value.
// Once the Primitive value is decoded, the keys will be considered decoded.
//
// Also note that decoding into an empty interface will result in no decoding,
// and so no keys will be considered decoded.
//
// In this sense, the Undecoded keys correspond to keys in the TOML document
// that do not have a concrete type in your representation.
func (md *MetaData) Undecoded() []Key {
undecoded := make([]Key, 0, len(md.keys))
for _, key := range md.keys {
if !md.decoded[key.String()] {
undecoded = append(undecoded, key)
}
}
return undecoded
}

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package toml
import (
"fmt"
"log"
"reflect"
"testing"
"time"
)
func init() {
log.SetFlags(0)
}
func TestDecodeSimple(t *testing.T) {
var testSimple = `
age = 250
andrew = "gallant"
kait = "brady"
now = 1987-07-05T05:45:00Z
yesOrNo = true
pi = 3.14
colors = [
["red", "green", "blue"],
["cyan", "magenta", "yellow", "black"],
]
[My.Cats]
plato = "cat 1"
cauchy = "cat 2"
`
type cats struct {
Plato string
Cauchy string
}
type simple struct {
Age int
Colors [][]string
Pi float64
YesOrNo bool
Now time.Time
Andrew string
Kait string
My map[string]cats
}
var val simple
_, err := Decode(testSimple, &val)
if err != nil {
t.Fatal(err)
}
now, err := time.Parse("2006-01-02T15:04:05", "1987-07-05T05:45:00")
if err != nil {
panic(err)
}
var answer = simple{
Age: 250,
Andrew: "gallant",
Kait: "brady",
Now: now,
YesOrNo: true,
Pi: 3.14,
Colors: [][]string{
{"red", "green", "blue"},
{"cyan", "magenta", "yellow", "black"},
},
My: map[string]cats{
"Cats": cats{Plato: "cat 1", Cauchy: "cat 2"},
},
}
if !reflect.DeepEqual(val, answer) {
t.Fatalf("Expected\n-----\n%#v\n-----\nbut got\n-----\n%#v\n",
answer, val)
}
}
func TestDecodeEmbedded(t *testing.T) {
type Dog struct{ Name string }
type Age int
tests := map[string]struct {
input string
decodeInto interface{}
wantDecoded interface{}
}{
"embedded struct": {
input: `Name = "milton"`,
decodeInto: &struct{ Dog }{},
wantDecoded: &struct{ Dog }{Dog{"milton"}},
},
"embedded non-nil pointer to struct": {
input: `Name = "milton"`,
decodeInto: &struct{ *Dog }{},
wantDecoded: &struct{ *Dog }{&Dog{"milton"}},
},
"embedded nil pointer to struct": {
input: ``,
decodeInto: &struct{ *Dog }{},
wantDecoded: &struct{ *Dog }{nil},
},
"embedded int": {
input: `Age = -5`,
decodeInto: &struct{ Age }{},
wantDecoded: &struct{ Age }{-5},
},
}
for label, test := range tests {
_, err := Decode(test.input, test.decodeInto)
if err != nil {
t.Fatal(err)
}
if !reflect.DeepEqual(test.wantDecoded, test.decodeInto) {
t.Errorf("%s: want decoded == %+v, got %+v",
label, test.wantDecoded, test.decodeInto)
}
}
}
func TestTableArrays(t *testing.T) {
var tomlTableArrays = `
[[albums]]
name = "Born to Run"
[[albums.songs]]
name = "Jungleland"
[[albums.songs]]
name = "Meeting Across the River"
[[albums]]
name = "Born in the USA"
[[albums.songs]]
name = "Glory Days"
[[albums.songs]]
name = "Dancing in the Dark"
`
type Song struct {
Name string
}
type Album struct {
Name string
Songs []Song
}
type Music struct {
Albums []Album
}
expected := Music{[]Album{
{"Born to Run", []Song{{"Jungleland"}, {"Meeting Across the River"}}},
{"Born in the USA", []Song{{"Glory Days"}, {"Dancing in the Dark"}}},
}}
var got Music
if _, err := Decode(tomlTableArrays, &got); err != nil {
t.Fatal(err)
}
if !reflect.DeepEqual(expected, got) {
t.Fatalf("\n%#v\n!=\n%#v\n", expected, got)
}
}
// Case insensitive matching tests.
// A bit more comprehensive than needed given the current implementation,
// but implementations change.
// Probably still missing demonstrations of some ugly corner cases regarding
// case insensitive matching and multiple fields.
func TestCase(t *testing.T) {
var caseToml = `
tOpString = "string"
tOpInt = 1
tOpFloat = 1.1
tOpBool = true
tOpdate = 2006-01-02T15:04:05Z
tOparray = [ "array" ]
Match = "i should be in Match only"
MatcH = "i should be in MatcH only"
once = "just once"
[nEst.eD]
nEstedString = "another string"
`
type InsensitiveEd struct {
NestedString string
}
type InsensitiveNest struct {
Ed InsensitiveEd
}
type Insensitive struct {
TopString string
TopInt int
TopFloat float64
TopBool bool
TopDate time.Time
TopArray []string
Match string
MatcH string
Once string
OncE string
Nest InsensitiveNest
}
tme, err := time.Parse(time.RFC3339, time.RFC3339[:len(time.RFC3339)-5])
if err != nil {
panic(err)
}
expected := Insensitive{
TopString: "string",
TopInt: 1,
TopFloat: 1.1,
TopBool: true,
TopDate: tme,
TopArray: []string{"array"},
MatcH: "i should be in MatcH only",
Match: "i should be in Match only",
Once: "just once",
OncE: "",
Nest: InsensitiveNest{
Ed: InsensitiveEd{NestedString: "another string"},
},
}
var got Insensitive
if _, err := Decode(caseToml, &got); err != nil {
t.Fatal(err)
}
if !reflect.DeepEqual(expected, got) {
t.Fatalf("\n%#v\n!=\n%#v\n", expected, got)
}
}
func TestPointers(t *testing.T) {
type Object struct {
Type string
Description string
}
type Dict struct {
NamedObject map[string]*Object
BaseObject *Object
Strptr *string
Strptrs []*string
}
s1, s2, s3 := "blah", "abc", "def"
expected := &Dict{
Strptr: &s1,
Strptrs: []*string{&s2, &s3},
NamedObject: map[string]*Object{
"foo": {"FOO", "fooooo!!!"},
"bar": {"BAR", "ba-ba-ba-ba-barrrr!!!"},
},
BaseObject: &Object{"BASE", "da base"},
}
ex1 := `
Strptr = "blah"
Strptrs = ["abc", "def"]
[NamedObject.foo]
Type = "FOO"
Description = "fooooo!!!"
[NamedObject.bar]
Type = "BAR"
Description = "ba-ba-ba-ba-barrrr!!!"
[BaseObject]
Type = "BASE"
Description = "da base"
`
dict := new(Dict)
_, err := Decode(ex1, dict)
if err != nil {
t.Errorf("Decode error: %v", err)
}
if !reflect.DeepEqual(expected, dict) {
t.Fatalf("\n%#v\n!=\n%#v\n", expected, dict)
}
}
type sphere struct {
Center [3]float64
Radius float64
}
func TestDecodeSimpleArray(t *testing.T) {
var s1 sphere
if _, err := Decode(`center = [0.0, 1.5, 0.0]`, &s1); err != nil {
t.Fatal(err)
}
}
func TestDecodeArrayWrongSize(t *testing.T) {
var s1 sphere
if _, err := Decode(`center = [0.1, 2.3]`, &s1); err == nil {
t.Fatal("Expected array type mismatch error")
}
}
func TestDecodeLargeIntoSmallInt(t *testing.T) {
type table struct {
Value int8
}
var tab table
if _, err := Decode(`value = 500`, &tab); err == nil {
t.Fatal("Expected integer out-of-bounds error.")
}
}
func TestDecodeSizedInts(t *testing.T) {
type table struct {
U8 uint8
U16 uint16
U32 uint32
U64 uint64
U uint
I8 int8
I16 int16
I32 int32
I64 int64
I int
}
answer := table{1, 1, 1, 1, 1, -1, -1, -1, -1, -1}
toml := `
u8 = 1
u16 = 1
u32 = 1
u64 = 1
u = 1
i8 = -1
i16 = -1
i32 = -1
i64 = -1
i = -1
`
var tab table
if _, err := Decode(toml, &tab); err != nil {
t.Fatal(err.Error())
}
if answer != tab {
t.Fatalf("Expected %#v but got %#v", answer, tab)
}
}
func TestUnmarshaler(t *testing.T) {
var tomlBlob = `
[dishes.hamboogie]
name = "Hamboogie with fries"
price = 10.99
[[dishes.hamboogie.ingredients]]
name = "Bread Bun"
[[dishes.hamboogie.ingredients]]
name = "Lettuce"
[[dishes.hamboogie.ingredients]]
name = "Real Beef Patty"
[[dishes.hamboogie.ingredients]]
name = "Tomato"
[dishes.eggsalad]
name = "Egg Salad with rice"
price = 3.99
[[dishes.eggsalad.ingredients]]
name = "Egg"
[[dishes.eggsalad.ingredients]]
name = "Mayo"
[[dishes.eggsalad.ingredients]]
name = "Rice"
`
m := &menu{}
if _, err := Decode(tomlBlob, m); err != nil {
log.Fatal(err)
}
if len(m.Dishes) != 2 {
t.Log("two dishes should be loaded with UnmarshalTOML()")
t.Errorf("expected %d but got %d", 2, len(m.Dishes))
}
eggSalad := m.Dishes["eggsalad"]
if _, ok := interface{}(eggSalad).(dish); !ok {
t.Errorf("expected a dish")
}
if eggSalad.Name != "Egg Salad with rice" {
t.Errorf("expected the dish to be named 'Egg Salad with rice'")
}
if len(eggSalad.Ingredients) != 3 {
t.Log("dish should be loaded with UnmarshalTOML()")
t.Errorf("expected %d but got %d", 3, len(eggSalad.Ingredients))
}
found := false
for _, i := range eggSalad.Ingredients {
if i.Name == "Rice" {
found = true
break
}
}
if !found {
t.Error("Rice was not loaded in UnmarshalTOML()")
}
// test on a value - must be passed as *
o := menu{}
if _, err := Decode(tomlBlob, &o); err != nil {
log.Fatal(err)
}
}
type menu struct {
Dishes map[string]dish
}
func (m *menu) UnmarshalTOML(p interface{}) error {
m.Dishes = make(map[string]dish)
data, _ := p.(map[string]interface{})
dishes := data["dishes"].(map[string]interface{})
for n, v := range dishes {
if d, ok := v.(map[string]interface{}); ok {
nd := dish{}
nd.UnmarshalTOML(d)
m.Dishes[n] = nd
} else {
return fmt.Errorf("not a dish")
}
}
return nil
}
type dish struct {
Name string
Price float32
Ingredients []ingredient
}
func (d *dish) UnmarshalTOML(p interface{}) error {
data, _ := p.(map[string]interface{})
d.Name, _ = data["name"].(string)
d.Price, _ = data["price"].(float32)
ingredients, _ := data["ingredients"].([]map[string]interface{})
for _, e := range ingredients {
n, _ := interface{}(e).(map[string]interface{})
name, _ := n["name"].(string)
i := ingredient{name}
d.Ingredients = append(d.Ingredients, i)
}
return nil
}
type ingredient struct {
Name string
}
func ExampleMetaData_PrimitiveDecode() {
var md MetaData
var err error
var tomlBlob = `
ranking = ["Springsteen", "J Geils"]
[bands.Springsteen]
started = 1973
albums = ["Greetings", "WIESS", "Born to Run", "Darkness"]
[bands."J Geils"]
started = 1970
albums = ["The J. Geils Band", "Full House", "Blow Your Face Out"]
`
type band struct {
Started int
Albums []string
}
type classics struct {
Ranking []string
Bands map[string]Primitive
}
// Do the initial decode. Reflection is delayed on Primitive values.
var music classics
if md, err = Decode(tomlBlob, &music); err != nil {
log.Fatal(err)
}
// MetaData still includes information on Primitive values.
fmt.Printf("Is `bands.Springsteen` defined? %v\n",
md.IsDefined("bands", "Springsteen"))
// Decode primitive data into Go values.
for _, artist := range music.Ranking {
// A band is a primitive value, so we need to decode it to get a
// real `band` value.
primValue := music.Bands[artist]
var aBand band
if err = md.PrimitiveDecode(primValue, &aBand); err != nil {
log.Fatal(err)
}
fmt.Printf("%s started in %d.\n", artist, aBand.Started)
}
// Check to see if there were any fields left undecoded.
// Note that this won't be empty before decoding the Primitive value!
fmt.Printf("Undecoded: %q\n", md.Undecoded())
// Output:
// Is `bands.Springsteen` defined? true
// Springsteen started in 1973.
// J Geils started in 1970.
// Undecoded: []
}
func ExampleDecode() {
var tomlBlob = `
# Some comments.
[alpha]
ip = "10.0.0.1"
[alpha.config]
Ports = [ 8001, 8002 ]
Location = "Toronto"
Created = 1987-07-05T05:45:00Z
[beta]
ip = "10.0.0.2"
[beta.config]
Ports = [ 9001, 9002 ]
Location = "New Jersey"
Created = 1887-01-05T05:55:00Z
`
type serverConfig struct {
Ports []int
Location string
Created time.Time
}
type server struct {
IP string `toml:"ip"`
Config serverConfig `toml:"config"`
}
type servers map[string]server
var config servers
if _, err := Decode(tomlBlob, &config); err != nil {
log.Fatal(err)
}
for _, name := range []string{"alpha", "beta"} {
s := config[name]
fmt.Printf("Server: %s (ip: %s) in %s created on %s\n",
name, s.IP, s.Config.Location,
s.Config.Created.Format("2006-01-02"))
fmt.Printf("Ports: %v\n", s.Config.Ports)
}
// Output:
// Server: alpha (ip: 10.0.0.1) in Toronto created on 1987-07-05
// Ports: [8001 8002]
// Server: beta (ip: 10.0.0.2) in New Jersey created on 1887-01-05
// Ports: [9001 9002]
}
type duration struct {
time.Duration
}
func (d *duration) UnmarshalText(text []byte) error {
var err error
d.Duration, err = time.ParseDuration(string(text))
return err
}
// Example Unmarshaler shows how to decode TOML strings into your own
// custom data type.
func Example_unmarshaler() {
blob := `
[[song]]
name = "Thunder Road"
duration = "4m49s"
[[song]]
name = "Stairway to Heaven"
duration = "8m03s"
`
type song struct {
Name string
Duration duration
}
type songs struct {
Song []song
}
var favorites songs
if _, err := Decode(blob, &favorites); err != nil {
log.Fatal(err)
}
// Code to implement the TextUnmarshaler interface for `duration`:
//
// type duration struct {
// time.Duration
// }
//
// func (d *duration) UnmarshalText(text []byte) error {
// var err error
// d.Duration, err = time.ParseDuration(string(text))
// return err
// }
for _, s := range favorites.Song {
fmt.Printf("%s (%s)\n", s.Name, s.Duration)
}
// Output:
// Thunder Road (4m49s)
// Stairway to Heaven (8m3s)
}
// Example StrictDecoding shows how to detect whether there are keys in the
// TOML document that weren't decoded into the value given. This is useful
// for returning an error to the user if they've included extraneous fields
// in their configuration.
func Example_strictDecoding() {
var blob = `
key1 = "value1"
key2 = "value2"
key3 = "value3"
`
type config struct {
Key1 string
Key3 string
}
var conf config
md, err := Decode(blob, &conf)
if err != nil {
log.Fatal(err)
}
fmt.Printf("Undecoded keys: %q\n", md.Undecoded())
// Output:
// Undecoded keys: ["key2"]
}
// Example UnmarshalTOML shows how to implement a struct type that knows how to
// unmarshal itself. The struct must take full responsibility for mapping the
// values passed into the struct. The method may be used with interfaces in a
// struct in cases where the actual type is not known until the data is
// examined.
func Example_unmarshalTOML() {
var blob = `
[[parts]]
type = "valve"
id = "valve-1"
size = 1.2
rating = 4
[[parts]]
type = "valve"
id = "valve-2"
size = 2.1
rating = 5
[[parts]]
type = "pipe"
id = "pipe-1"
length = 2.1
diameter = 12
[[parts]]
type = "cable"
id = "cable-1"
length = 12
rating = 3.1
`
o := &order{}
err := Unmarshal([]byte(blob), o)
if err != nil {
log.Fatal(err)
}
fmt.Println(len(o.parts))
for _, part := range o.parts {
fmt.Println(part.Name())
}
// Code to implement UmarshalJSON.
// type order struct {
// // NOTE `order.parts` is a private slice of type `part` which is an
// // interface and may only be loaded from toml using the
// // UnmarshalTOML() method of the Umarshaler interface.
// parts parts
// }
// func (o *order) UnmarshalTOML(data interface{}) error {
// // NOTE the example below contains detailed type casting to show how
// // the 'data' is retrieved. In operational use, a type cast wrapper
// // may be prefered e.g.
// //
// // func AsMap(v interface{}) (map[string]interface{}, error) {
// // return v.(map[string]interface{})
// // }
// //
// // resulting in:
// // d, _ := AsMap(data)
// //
// d, _ := data.(map[string]interface{})
// parts, _ := d["parts"].([]map[string]interface{})
// for _, p := range parts {
// typ, _ := p["type"].(string)
// id, _ := p["id"].(string)
// // detect the type of part and handle each case
// switch p["type"] {
// case "valve":
// size := float32(p["size"].(float64))
// rating := int(p["rating"].(int64))
// valve := &valve{
// Type: typ,
// ID: id,
// Size: size,
// Rating: rating,
// }
// o.parts = append(o.parts, valve)
// case "pipe":
// length := float32(p["length"].(float64))
// diameter := int(p["diameter"].(int64))
// pipe := &pipe{
// Type: typ,
// ID: id,
// Length: length,
// Diameter: diameter,
// }
// o.parts = append(o.parts, pipe)
// case "cable":
// length := int(p["length"].(int64))
// rating := float32(p["rating"].(float64))
// cable := &cable{
// Type: typ,
// ID: id,
// Length: length,
// Rating: rating,
// }
// o.parts = append(o.parts, cable)
// }
// }
// return nil
// }
// type parts []part
// type part interface {
// Name() string
// }
// type valve struct {
// Type string
// ID string
// Size float32
// Rating int
// }
// func (v *valve) Name() string {
// return fmt.Sprintf("VALVE: %s", v.ID)
// }
// type pipe struct {
// Type string
// ID string
// Length float32
// Diameter int
// }
// func (p *pipe) Name() string {
// return fmt.Sprintf("PIPE: %s", p.ID)
// }
// type cable struct {
// Type string
// ID string
// Length int
// Rating float32
// }
// func (c *cable) Name() string {
// return fmt.Sprintf("CABLE: %s", c.ID)
// }
// Output:
// 4
// VALVE: valve-1
// VALVE: valve-2
// PIPE: pipe-1
// CABLE: cable-1
}
type order struct {
// NOTE `order.parts` is a private slice of type `part` which is an
// interface and may only be loaded from toml using the UnmarshalTOML()
// method of the Umarshaler interface.
parts parts
}
func (o *order) UnmarshalTOML(data interface{}) error {
// NOTE the example below contains detailed type casting to show how
// the 'data' is retrieved. In operational use, a type cast wrapper
// may be prefered e.g.
//
// func AsMap(v interface{}) (map[string]interface{}, error) {
// return v.(map[string]interface{})
// }
//
// resulting in:
// d, _ := AsMap(data)
//
d, _ := data.(map[string]interface{})
parts, _ := d["parts"].([]map[string]interface{})
for _, p := range parts {
typ, _ := p["type"].(string)
id, _ := p["id"].(string)
// detect the type of part and handle each case
switch p["type"] {
case "valve":
size := float32(p["size"].(float64))
rating := int(p["rating"].(int64))
valve := &valve{
Type: typ,
ID: id,
Size: size,
Rating: rating,
}
o.parts = append(o.parts, valve)
case "pipe":
length := float32(p["length"].(float64))
diameter := int(p["diameter"].(int64))
pipe := &pipe{
Type: typ,
ID: id,
Length: length,
Diameter: diameter,
}
o.parts = append(o.parts, pipe)
case "cable":
length := int(p["length"].(int64))
rating := float32(p["rating"].(float64))
cable := &cable{
Type: typ,
ID: id,
Length: length,
Rating: rating,
}
o.parts = append(o.parts, cable)
}
}
return nil
}
type parts []part
type part interface {
Name() string
}
type valve struct {
Type string
ID string
Size float32
Rating int
}
func (v *valve) Name() string {
return fmt.Sprintf("VALVE: %s", v.ID)
}
type pipe struct {
Type string
ID string
Length float32
Diameter int
}
func (p *pipe) Name() string {
return fmt.Sprintf("PIPE: %s", p.ID)
}
type cable struct {
Type string
ID string
Length int
Rating float32
}
func (c *cable) Name() string {
return fmt.Sprintf("CABLE: %s", c.ID)
}

27
vendor/github.com/BurntSushi/toml/doc.go generated vendored Normal file
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@ -0,0 +1,27 @@
/*
Package toml provides facilities for decoding and encoding TOML configuration
files via reflection. There is also support for delaying decoding with
the Primitive type, and querying the set of keys in a TOML document with the
MetaData type.
The specification implemented: https://github.com/mojombo/toml
The sub-command github.com/BurntSushi/toml/cmd/tomlv can be used to verify
whether a file is a valid TOML document. It can also be used to print the
type of each key in a TOML document.
Testing
There are two important types of tests used for this package. The first is
contained inside '*_test.go' files and uses the standard Go unit testing
framework. These tests are primarily devoted to holistically testing the
decoder and encoder.
The second type of testing is used to verify the implementation's adherence
to the TOML specification. These tests have been factored into their own
project: https://github.com/BurntSushi/toml-test
The reason the tests are in a separate project is so that they can be used by
any implementation of TOML. Namely, it is language agnostic.
*/
package toml

551
vendor/github.com/BurntSushi/toml/encode.go generated vendored Normal file
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@ -0,0 +1,551 @@
package toml
import (
"bufio"
"errors"
"fmt"
"io"
"reflect"
"sort"
"strconv"
"strings"
"time"
)
type tomlEncodeError struct{ error }
var (
errArrayMixedElementTypes = errors.New(
"can't encode array with mixed element types")
errArrayNilElement = errors.New(
"can't encode array with nil element")
errNonString = errors.New(
"can't encode a map with non-string key type")
errAnonNonStruct = errors.New(
"can't encode an anonymous field that is not a struct")
errArrayNoTable = errors.New(
"TOML array element can't contain a table")
errNoKey = errors.New(
"top-level values must be a Go map or struct")
errAnything = errors.New("") // used in testing
)
var quotedReplacer = strings.NewReplacer(
"\t", "\\t",
"\n", "\\n",
"\r", "\\r",
"\"", "\\\"",
"\\", "\\\\",
)
// Encoder controls the encoding of Go values to a TOML document to some
// io.Writer.
//
// The indentation level can be controlled with the Indent field.
type Encoder struct {
// A single indentation level. By default it is two spaces.
Indent string
// hasWritten is whether we have written any output to w yet.
hasWritten bool
w *bufio.Writer
}
// NewEncoder returns a TOML encoder that encodes Go values to the io.Writer
// given. By default, a single indentation level is 2 spaces.
func NewEncoder(w io.Writer) *Encoder {
return &Encoder{
w: bufio.NewWriter(w),
Indent: " ",
}
}
// Encode writes a TOML representation of the Go value to the underlying
// io.Writer. If the value given cannot be encoded to a valid TOML document,
// then an error is returned.
//
// The mapping between Go values and TOML values should be precisely the same
// as for the Decode* functions. Similarly, the TextMarshaler interface is
// supported by encoding the resulting bytes as strings. (If you want to write
// arbitrary binary data then you will need to use something like base64 since
// TOML does not have any binary types.)
//
// When encoding TOML hashes (i.e., Go maps or structs), keys without any
// sub-hashes are encoded first.
//
// If a Go map is encoded, then its keys are sorted alphabetically for
// deterministic output. More control over this behavior may be provided if
// there is demand for it.
//
// Encoding Go values without a corresponding TOML representation---like map
// types with non-string keys---will cause an error to be returned. Similarly
// for mixed arrays/slices, arrays/slices with nil elements, embedded
// non-struct types and nested slices containing maps or structs.
// (e.g., [][]map[string]string is not allowed but []map[string]string is OK
// and so is []map[string][]string.)
func (enc *Encoder) Encode(v interface{}) error {
rv := eindirect(reflect.ValueOf(v))
if err := enc.safeEncode(Key([]string{}), rv); err != nil {
return err
}
return enc.w.Flush()
}
func (enc *Encoder) safeEncode(key Key, rv reflect.Value) (err error) {
defer func() {
if r := recover(); r != nil {
if terr, ok := r.(tomlEncodeError); ok {
err = terr.error
return
}
panic(r)
}
}()
enc.encode(key, rv)
return nil
}
func (enc *Encoder) encode(key Key, rv reflect.Value) {
// Special case. Time needs to be in ISO8601 format.
// Special case. If we can marshal the type to text, then we used that.
// Basically, this prevents the encoder for handling these types as
// generic structs (or whatever the underlying type of a TextMarshaler is).
switch rv.Interface().(type) {
case time.Time, TextMarshaler:
enc.keyEqElement(key, rv)
return
}
k := rv.Kind()
switch k {
case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32,
reflect.Int64,
reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32,
reflect.Uint64,
reflect.Float32, reflect.Float64, reflect.String, reflect.Bool:
enc.keyEqElement(key, rv)
case reflect.Array, reflect.Slice:
if typeEqual(tomlArrayHash, tomlTypeOfGo(rv)) {
enc.eArrayOfTables(key, rv)
} else {
enc.keyEqElement(key, rv)
}
case reflect.Interface:
if rv.IsNil() {
return
}
enc.encode(key, rv.Elem())
case reflect.Map:
if rv.IsNil() {
return
}
enc.eTable(key, rv)
case reflect.Ptr:
if rv.IsNil() {
return
}
enc.encode(key, rv.Elem())
case reflect.Struct:
enc.eTable(key, rv)
default:
panic(e("Unsupported type for key '%s': %s", key, k))
}
}
// eElement encodes any value that can be an array element (primitives and
// arrays).
func (enc *Encoder) eElement(rv reflect.Value) {
switch v := rv.Interface().(type) {
case time.Time:
// Special case time.Time as a primitive. Has to come before
// TextMarshaler below because time.Time implements
// encoding.TextMarshaler, but we need to always use UTC.
enc.wf(v.In(time.FixedZone("UTC", 0)).Format("2006-01-02T15:04:05Z"))
return
case TextMarshaler:
// Special case. Use text marshaler if it's available for this value.
if s, err := v.MarshalText(); err != nil {
encPanic(err)
} else {
enc.writeQuoted(string(s))
}
return
}
switch rv.Kind() {
case reflect.Bool:
enc.wf(strconv.FormatBool(rv.Bool()))
case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32,
reflect.Int64:
enc.wf(strconv.FormatInt(rv.Int(), 10))
case reflect.Uint, reflect.Uint8, reflect.Uint16,
reflect.Uint32, reflect.Uint64:
enc.wf(strconv.FormatUint(rv.Uint(), 10))
case reflect.Float32:
enc.wf(floatAddDecimal(strconv.FormatFloat(rv.Float(), 'f', -1, 32)))
case reflect.Float64:
enc.wf(floatAddDecimal(strconv.FormatFloat(rv.Float(), 'f', -1, 64)))
case reflect.Array, reflect.Slice:
enc.eArrayOrSliceElement(rv)
case reflect.Interface:
enc.eElement(rv.Elem())
case reflect.String:
enc.writeQuoted(rv.String())
default:
panic(e("Unexpected primitive type: %s", rv.Kind()))
}
}
// By the TOML spec, all floats must have a decimal with at least one
// number on either side.
func floatAddDecimal(fstr string) string {
if !strings.Contains(fstr, ".") {
return fstr + ".0"
}
return fstr
}
func (enc *Encoder) writeQuoted(s string) {
enc.wf("\"%s\"", quotedReplacer.Replace(s))
}
func (enc *Encoder) eArrayOrSliceElement(rv reflect.Value) {
length := rv.Len()
enc.wf("[")
for i := 0; i < length; i++ {
elem := rv.Index(i)
enc.eElement(elem)
if i != length-1 {
enc.wf(", ")
}
}
enc.wf("]")
}
func (enc *Encoder) eArrayOfTables(key Key, rv reflect.Value) {
if len(key) == 0 {
encPanic(errNoKey)
}
for i := 0; i < rv.Len(); i++ {
trv := rv.Index(i)
if isNil(trv) {
continue
}
panicIfInvalidKey(key)
enc.newline()
enc.wf("%s[[%s]]", enc.indentStr(key), key.maybeQuotedAll())
enc.newline()
enc.eMapOrStruct(key, trv)
}
}
func (enc *Encoder) eTable(key Key, rv reflect.Value) {
panicIfInvalidKey(key)
if len(key) == 1 {
// Output an extra new line between top-level tables.
// (The newline isn't written if nothing else has been written though.)
enc.newline()
}
if len(key) > 0 {
enc.wf("%s[%s]", enc.indentStr(key), key.maybeQuotedAll())
enc.newline()
}
enc.eMapOrStruct(key, rv)
}
func (enc *Encoder) eMapOrStruct(key Key, rv reflect.Value) {
switch rv := eindirect(rv); rv.Kind() {
case reflect.Map:
enc.eMap(key, rv)
case reflect.Struct:
enc.eStruct(key, rv)
default:
panic("eTable: unhandled reflect.Value Kind: " + rv.Kind().String())
}
}
func (enc *Encoder) eMap(key Key, rv reflect.Value) {
rt := rv.Type()
if rt.Key().Kind() != reflect.String {
encPanic(errNonString)
}
// Sort keys so that we have deterministic output. And write keys directly
// underneath this key first, before writing sub-structs or sub-maps.
var mapKeysDirect, mapKeysSub []string
for _, mapKey := range rv.MapKeys() {
k := mapKey.String()
if typeIsHash(tomlTypeOfGo(rv.MapIndex(mapKey))) {
mapKeysSub = append(mapKeysSub, k)
} else {
mapKeysDirect = append(mapKeysDirect, k)
}
}
var writeMapKeys = func(mapKeys []string) {
sort.Strings(mapKeys)
for _, mapKey := range mapKeys {
mrv := rv.MapIndex(reflect.ValueOf(mapKey))
if isNil(mrv) {
// Don't write anything for nil fields.
continue
}
enc.encode(key.add(mapKey), mrv)
}
}
writeMapKeys(mapKeysDirect)
writeMapKeys(mapKeysSub)
}
func (enc *Encoder) eStruct(key Key, rv reflect.Value) {
// Write keys for fields directly under this key first, because if we write
// a field that creates a new table, then all keys under it will be in that
// table (not the one we're writing here).
rt := rv.Type()
var fieldsDirect, fieldsSub [][]int
var addFields func(rt reflect.Type, rv reflect.Value, start []int)
addFields = func(rt reflect.Type, rv reflect.Value, start []int) {
for i := 0; i < rt.NumField(); i++ {
f := rt.Field(i)
// skip unexporded fields
if f.PkgPath != "" {
continue
}
frv := rv.Field(i)
if f.Anonymous {
frv := eindirect(frv)
t := frv.Type()
if t.Kind() != reflect.Struct {
encPanic(errAnonNonStruct)
}
addFields(t, frv, f.Index)
} else if typeIsHash(tomlTypeOfGo(frv)) {
fieldsSub = append(fieldsSub, append(start, f.Index...))
} else {
fieldsDirect = append(fieldsDirect, append(start, f.Index...))
}
}
}
addFields(rt, rv, nil)
var writeFields = func(fields [][]int) {
for _, fieldIndex := range fields {
sft := rt.FieldByIndex(fieldIndex)
sf := rv.FieldByIndex(fieldIndex)
if isNil(sf) {
// Don't write anything for nil fields.
continue
}
keyName := sft.Tag.Get("toml")
if keyName == "-" {
continue
}
if keyName == "" {
keyName = sft.Name
}
keyName, opts := getOptions(keyName)
if _, ok := opts["omitempty"]; ok && isEmpty(sf) {
continue
} else if _, ok := opts["omitzero"]; ok && isZero(sf) {
continue
}
enc.encode(key.add(keyName), sf)
}
}
writeFields(fieldsDirect)
writeFields(fieldsSub)
}
// tomlTypeName returns the TOML type name of the Go value's type. It is
// used to determine whether the types of array elements are mixed (which is
// forbidden). If the Go value is nil, then it is illegal for it to be an array
// element, and valueIsNil is returned as true.
// Returns the TOML type of a Go value. The type may be `nil`, which means
// no concrete TOML type could be found.
func tomlTypeOfGo(rv reflect.Value) tomlType {
if isNil(rv) || !rv.IsValid() {
return nil
}
switch rv.Kind() {
case reflect.Bool:
return tomlBool
case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32,
reflect.Int64,
reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32,
reflect.Uint64:
return tomlInteger
case reflect.Float32, reflect.Float64:
return tomlFloat
case reflect.Array, reflect.Slice:
if typeEqual(tomlHash, tomlArrayType(rv)) {
return tomlArrayHash
} else {
return tomlArray
}
case reflect.Ptr, reflect.Interface:
return tomlTypeOfGo(rv.Elem())
case reflect.String:
return tomlString
case reflect.Map:
return tomlHash
case reflect.Struct:
switch rv.Interface().(type) {
case time.Time:
return tomlDatetime
case TextMarshaler:
return tomlString
default:
return tomlHash
}
default:
panic("unexpected reflect.Kind: " + rv.Kind().String())
}
}
// tomlArrayType returns the element type of a TOML array. The type returned
// may be nil if it cannot be determined (e.g., a nil slice or a zero length
// slize). This function may also panic if it finds a type that cannot be
// expressed in TOML (such as nil elements, heterogeneous arrays or directly
// nested arrays of tables).
func tomlArrayType(rv reflect.Value) tomlType {
if isNil(rv) || !rv.IsValid() || rv.Len() == 0 {
return nil
}
firstType := tomlTypeOfGo(rv.Index(0))
if firstType == nil {
encPanic(errArrayNilElement)
}
rvlen := rv.Len()
for i := 1; i < rvlen; i++ {
elem := rv.Index(i)
switch elemType := tomlTypeOfGo(elem); {
case elemType == nil:
encPanic(errArrayNilElement)
case !typeEqual(firstType, elemType):
encPanic(errArrayMixedElementTypes)
}
}
// If we have a nested array, then we must make sure that the nested
// array contains ONLY primitives.
// This checks arbitrarily nested arrays.
if typeEqual(firstType, tomlArray) || typeEqual(firstType, tomlArrayHash) {
nest := tomlArrayType(eindirect(rv.Index(0)))
if typeEqual(nest, tomlHash) || typeEqual(nest, tomlArrayHash) {
encPanic(errArrayNoTable)
}
}
return firstType
}
func getOptions(keyName string) (string, map[string]struct{}) {
opts := make(map[string]struct{})
ss := strings.Split(keyName, ",")
name := ss[0]
if len(ss) > 1 {
for _, opt := range ss {
opts[opt] = struct{}{}
}
}
return name, opts
}
func isZero(rv reflect.Value) bool {
switch rv.Kind() {
case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64:
if rv.Int() == 0 {
return true
}
case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64:
if rv.Uint() == 0 {
return true
}
case reflect.Float32, reflect.Float64:
if rv.Float() == 0.0 {
return true
}
}
return false
}
func isEmpty(rv reflect.Value) bool {
switch rv.Kind() {
case reflect.String:
if len(strings.TrimSpace(rv.String())) == 0 {
return true
}
case reflect.Array, reflect.Slice, reflect.Map:
if rv.Len() == 0 {
return true
}
}
return false
}
func (enc *Encoder) newline() {
if enc.hasWritten {
enc.wf("\n")
}
}
func (enc *Encoder) keyEqElement(key Key, val reflect.Value) {
if len(key) == 0 {
encPanic(errNoKey)
}
panicIfInvalidKey(key)
enc.wf("%s%s = ", enc.indentStr(key), key.maybeQuoted(len(key)-1))
enc.eElement(val)
enc.newline()
}
func (enc *Encoder) wf(format string, v ...interface{}) {
if _, err := fmt.Fprintf(enc.w, format, v...); err != nil {
encPanic(err)
}
enc.hasWritten = true
}
func (enc *Encoder) indentStr(key Key) string {
return strings.Repeat(enc.Indent, len(key)-1)
}
func encPanic(err error) {
panic(tomlEncodeError{err})
}
func eindirect(v reflect.Value) reflect.Value {
switch v.Kind() {
case reflect.Ptr, reflect.Interface:
return eindirect(v.Elem())
default:
return v
}
}
func isNil(rv reflect.Value) bool {
switch rv.Kind() {
case reflect.Interface, reflect.Map, reflect.Ptr, reflect.Slice:
return rv.IsNil()
default:
return false
}
}
func panicIfInvalidKey(key Key) {
for _, k := range key {
if len(k) == 0 {
encPanic(e("Key '%s' is not a valid table name. Key names "+
"cannot be empty.", key.maybeQuotedAll()))
}
}
}
func isValidKeyName(s string) bool {
return len(s) != 0
}

542
vendor/github.com/BurntSushi/toml/encode_test.go generated vendored Normal file
View file

@ -0,0 +1,542 @@
package toml
import (
"bytes"
"fmt"
"log"
"net"
"testing"
"time"
)
func TestEncodeRoundTrip(t *testing.T) {
type Config struct {
Age int
Cats []string
Pi float64
Perfection []int
DOB time.Time
Ipaddress net.IP
}
var inputs = Config{
13,
[]string{"one", "two", "three"},
3.145,
[]int{11, 2, 3, 4},
time.Now(),
net.ParseIP("192.168.59.254"),
}
var firstBuffer bytes.Buffer
e := NewEncoder(&firstBuffer)
err := e.Encode(inputs)
if err != nil {
t.Fatal(err)
}
var outputs Config
if _, err := Decode(firstBuffer.String(), &outputs); err != nil {
log.Printf("Could not decode:\n-----\n%s\n-----\n",
firstBuffer.String())
t.Fatal(err)
}
// could test each value individually, but I'm lazy
var secondBuffer bytes.Buffer
e2 := NewEncoder(&secondBuffer)
err = e2.Encode(outputs)
if err != nil {
t.Fatal(err)
}
if firstBuffer.String() != secondBuffer.String() {
t.Error(
firstBuffer.String(),
"\n\n is not identical to\n\n",
secondBuffer.String())
}
}
// XXX(burntsushi)
// I think these tests probably should be removed. They are good, but they
// ought to be obsolete by toml-test.
func TestEncode(t *testing.T) {
type Embedded struct {
Int int `toml:"_int"`
}
type NonStruct int
date := time.Date(2014, 5, 11, 20, 30, 40, 0, time.FixedZone("IST", 3600))
dateStr := "2014-05-11T19:30:40Z"
tests := map[string]struct {
input interface{}
wantOutput string
wantError error
}{
"bool field": {
input: struct {
BoolTrue bool
BoolFalse bool
}{true, false},
wantOutput: "BoolTrue = true\nBoolFalse = false\n",
},
"int fields": {
input: struct {
Int int
Int8 int8
Int16 int16
Int32 int32
Int64 int64
}{1, 2, 3, 4, 5},
wantOutput: "Int = 1\nInt8 = 2\nInt16 = 3\nInt32 = 4\nInt64 = 5\n",
},
"uint fields": {
input: struct {
Uint uint
Uint8 uint8
Uint16 uint16
Uint32 uint32
Uint64 uint64
}{1, 2, 3, 4, 5},
wantOutput: "Uint = 1\nUint8 = 2\nUint16 = 3\nUint32 = 4" +
"\nUint64 = 5\n",
},
"float fields": {
input: struct {
Float32 float32
Float64 float64
}{1.5, 2.5},
wantOutput: "Float32 = 1.5\nFloat64 = 2.5\n",
},
"string field": {
input: struct{ String string }{"foo"},
wantOutput: "String = \"foo\"\n",
},
"string field and unexported field": {
input: struct {
String string
unexported int
}{"foo", 0},
wantOutput: "String = \"foo\"\n",
},
"datetime field in UTC": {
input: struct{ Date time.Time }{date},
wantOutput: fmt.Sprintf("Date = %s\n", dateStr),
},
"datetime field as primitive": {
// Using a map here to fail if isStructOrMap() returns true for
// time.Time.
input: map[string]interface{}{
"Date": date,
"Int": 1,
},
wantOutput: fmt.Sprintf("Date = %s\nInt = 1\n", dateStr),
},
"array fields": {
input: struct {
IntArray0 [0]int
IntArray3 [3]int
}{[0]int{}, [3]int{1, 2, 3}},
wantOutput: "IntArray0 = []\nIntArray3 = [1, 2, 3]\n",
},
"slice fields": {
input: struct{ IntSliceNil, IntSlice0, IntSlice3 []int }{
nil, []int{}, []int{1, 2, 3},
},
wantOutput: "IntSlice0 = []\nIntSlice3 = [1, 2, 3]\n",
},
"datetime slices": {
input: struct{ DatetimeSlice []time.Time }{
[]time.Time{date, date},
},
wantOutput: fmt.Sprintf("DatetimeSlice = [%s, %s]\n",
dateStr, dateStr),
},
"nested arrays and slices": {
input: struct {
SliceOfArrays [][2]int
ArrayOfSlices [2][]int
SliceOfArraysOfSlices [][2][]int
ArrayOfSlicesOfArrays [2][][2]int
SliceOfMixedArrays [][2]interface{}
ArrayOfMixedSlices [2][]interface{}
}{
[][2]int{{1, 2}, {3, 4}},
[2][]int{{1, 2}, {3, 4}},
[][2][]int{
{
{1, 2}, {3, 4},
},
{
{5, 6}, {7, 8},
},
},
[2][][2]int{
{
{1, 2}, {3, 4},
},
{
{5, 6}, {7, 8},
},
},
[][2]interface{}{
{1, 2}, {"a", "b"},
},
[2][]interface{}{
{1, 2}, {"a", "b"},
},
},
wantOutput: `SliceOfArrays = [[1, 2], [3, 4]]
ArrayOfSlices = [[1, 2], [3, 4]]
SliceOfArraysOfSlices = [[[1, 2], [3, 4]], [[5, 6], [7, 8]]]
ArrayOfSlicesOfArrays = [[[1, 2], [3, 4]], [[5, 6], [7, 8]]]
SliceOfMixedArrays = [[1, 2], ["a", "b"]]
ArrayOfMixedSlices = [[1, 2], ["a", "b"]]
`,
},
"empty slice": {
input: struct{ Empty []interface{} }{[]interface{}{}},
wantOutput: "Empty = []\n",
},
"(error) slice with element type mismatch (string and integer)": {
input: struct{ Mixed []interface{} }{[]interface{}{1, "a"}},
wantError: errArrayMixedElementTypes,
},
"(error) slice with element type mismatch (integer and float)": {
input: struct{ Mixed []interface{} }{[]interface{}{1, 2.5}},
wantError: errArrayMixedElementTypes,
},
"slice with elems of differing Go types, same TOML types": {
input: struct {
MixedInts []interface{}
MixedFloats []interface{}
}{
[]interface{}{
int(1), int8(2), int16(3), int32(4), int64(5),
uint(1), uint8(2), uint16(3), uint32(4), uint64(5),
},
[]interface{}{float32(1.5), float64(2.5)},
},
wantOutput: "MixedInts = [1, 2, 3, 4, 5, 1, 2, 3, 4, 5]\n" +
"MixedFloats = [1.5, 2.5]\n",
},
"(error) slice w/ element type mismatch (one is nested array)": {
input: struct{ Mixed []interface{} }{
[]interface{}{1, []interface{}{2}},
},
wantError: errArrayMixedElementTypes,
},
"(error) slice with 1 nil element": {
input: struct{ NilElement1 []interface{} }{[]interface{}{nil}},
wantError: errArrayNilElement,
},
"(error) slice with 1 nil element (and other non-nil elements)": {
input: struct{ NilElement []interface{} }{
[]interface{}{1, nil},
},
wantError: errArrayNilElement,
},
"simple map": {
input: map[string]int{"a": 1, "b": 2},
wantOutput: "a = 1\nb = 2\n",
},
"map with interface{} value type": {
input: map[string]interface{}{"a": 1, "b": "c"},
wantOutput: "a = 1\nb = \"c\"\n",
},
"map with interface{} value type, some of which are structs": {
input: map[string]interface{}{
"a": struct{ Int int }{2},
"b": 1,
},
wantOutput: "b = 1\n\n[a]\n Int = 2\n",
},
"nested map": {
input: map[string]map[string]int{
"a": {"b": 1},
"c": {"d": 2},
},
wantOutput: "[a]\n b = 1\n\n[c]\n d = 2\n",
},
"nested struct": {
input: struct{ Struct struct{ Int int } }{
struct{ Int int }{1},
},
wantOutput: "[Struct]\n Int = 1\n",
},
"nested struct and non-struct field": {
input: struct {
Struct struct{ Int int }
Bool bool
}{struct{ Int int }{1}, true},
wantOutput: "Bool = true\n\n[Struct]\n Int = 1\n",
},
"2 nested structs": {
input: struct{ Struct1, Struct2 struct{ Int int } }{
struct{ Int int }{1}, struct{ Int int }{2},
},
wantOutput: "[Struct1]\n Int = 1\n\n[Struct2]\n Int = 2\n",
},
"deeply nested structs": {
input: struct {
Struct1, Struct2 struct{ Struct3 *struct{ Int int } }
}{
struct{ Struct3 *struct{ Int int } }{&struct{ Int int }{1}},
struct{ Struct3 *struct{ Int int } }{nil},
},
wantOutput: "[Struct1]\n [Struct1.Struct3]\n Int = 1" +
"\n\n[Struct2]\n",
},
"nested struct with nil struct elem": {
input: struct {
Struct struct{ Inner *struct{ Int int } }
}{
struct{ Inner *struct{ Int int } }{nil},
},
wantOutput: "[Struct]\n",
},
"nested struct with no fields": {
input: struct {
Struct struct{ Inner struct{} }
}{
struct{ Inner struct{} }{struct{}{}},
},
wantOutput: "[Struct]\n [Struct.Inner]\n",
},
"struct with tags": {
input: struct {
Struct struct {
Int int `toml:"_int"`
} `toml:"_struct"`
Bool bool `toml:"_bool"`
}{
struct {
Int int `toml:"_int"`
}{1}, true,
},
wantOutput: "_bool = true\n\n[_struct]\n _int = 1\n",
},
"embedded struct": {
input: struct{ Embedded }{Embedded{1}},
wantOutput: "_int = 1\n",
},
"embedded *struct": {
input: struct{ *Embedded }{&Embedded{1}},
wantOutput: "_int = 1\n",
},
"nested embedded struct": {
input: struct {
Struct struct{ Embedded } `toml:"_struct"`
}{struct{ Embedded }{Embedded{1}}},
wantOutput: "[_struct]\n _int = 1\n",
},
"nested embedded *struct": {
input: struct {
Struct struct{ *Embedded } `toml:"_struct"`
}{struct{ *Embedded }{&Embedded{1}}},
wantOutput: "[_struct]\n _int = 1\n",
},
"array of tables": {
input: struct {
Structs []*struct{ Int int } `toml:"struct"`
}{
[]*struct{ Int int }{{1}, {3}},
},
wantOutput: "[[struct]]\n Int = 1\n\n[[struct]]\n Int = 3\n",
},
"array of tables order": {
input: map[string]interface{}{
"map": map[string]interface{}{
"zero": 5,
"arr": []map[string]int{
map[string]int{
"friend": 5,
},
},
},
},
wantOutput: "[map]\n zero = 5\n\n [[map.arr]]\n friend = 5\n",
},
"(error) top-level slice": {
input: []struct{ Int int }{{1}, {2}, {3}},
wantError: errNoKey,
},
"(error) slice of slice": {
input: struct {
Slices [][]struct{ Int int }
}{
[][]struct{ Int int }{{{1}}, {{2}}, {{3}}},
},
wantError: errArrayNoTable,
},
"(error) map no string key": {
input: map[int]string{1: ""},
wantError: errNonString,
},
"(error) anonymous non-struct": {
input: struct{ NonStruct }{5},
wantError: errAnonNonStruct,
},
"(error) empty key name": {
input: map[string]int{"": 1},
wantError: errAnything,
},
"(error) empty map name": {
input: map[string]interface{}{
"": map[string]int{"v": 1},
},
wantError: errAnything,
},
}
for label, test := range tests {
encodeExpected(t, label, test.input, test.wantOutput, test.wantError)
}
}
func TestEncodeNestedTableArrays(t *testing.T) {
type song struct {
Name string `toml:"name"`
}
type album struct {
Name string `toml:"name"`
Songs []song `toml:"songs"`
}
type springsteen struct {
Albums []album `toml:"albums"`
}
value := springsteen{
[]album{
{"Born to Run",
[]song{{"Jungleland"}, {"Meeting Across the River"}}},
{"Born in the USA",
[]song{{"Glory Days"}, {"Dancing in the Dark"}}},
},
}
expected := `[[albums]]
name = "Born to Run"
[[albums.songs]]
name = "Jungleland"
[[albums.songs]]
name = "Meeting Across the River"
[[albums]]
name = "Born in the USA"
[[albums.songs]]
name = "Glory Days"
[[albums.songs]]
name = "Dancing in the Dark"
`
encodeExpected(t, "nested table arrays", value, expected, nil)
}
func TestEncodeArrayHashWithNormalHashOrder(t *testing.T) {
type Alpha struct {
V int
}
type Beta struct {
V int
}
type Conf struct {
V int
A Alpha
B []Beta
}
val := Conf{
V: 1,
A: Alpha{2},
B: []Beta{{3}},
}
expected := "V = 1\n\n[A]\n V = 2\n\n[[B]]\n V = 3\n"
encodeExpected(t, "array hash with normal hash order", val, expected, nil)
}
func TestEncodeWithOmitEmpty(t *testing.T) {
type simple struct {
User string `toml:"user"`
Pass string `toml:"password,omitempty"`
}
value := simple{"Testing", ""}
expected := fmt.Sprintf("user = %q\n", value.User)
encodeExpected(t, "simple with omitempty, is empty", value, expected, nil)
value.Pass = "some password"
expected = fmt.Sprintf("user = %q\npassword = %q\n", value.User, value.Pass)
encodeExpected(t, "simple with omitempty, not empty", value, expected, nil)
}
func TestEncodeWithOmitZero(t *testing.T) {
type simple struct {
Number int `toml:"number,omitzero"`
Real float64 `toml:"real,omitzero"`
Unsigned uint `toml:"unsigned,omitzero"`
}
value := simple{0, 0.0, uint(0)}
expected := ""
encodeExpected(t, "simple with omitzero, all zero", value, expected, nil)
value.Number = 10
value.Real = 20
value.Unsigned = 5
expected = `number = 10
real = 20.0
unsigned = 5
`
encodeExpected(t, "simple with omitzero, non-zero", value, expected, nil)
}
func encodeExpected(
t *testing.T, label string, val interface{}, wantStr string, wantErr error,
) {
var buf bytes.Buffer
enc := NewEncoder(&buf)
err := enc.Encode(val)
if err != wantErr {
if wantErr != nil {
if wantErr == errAnything && err != nil {
return
}
t.Errorf("%s: want Encode error %v, got %v", label, wantErr, err)
} else {
t.Errorf("%s: Encode failed: %s", label, err)
}
}
if err != nil {
return
}
if got := buf.String(); wantStr != got {
t.Errorf("%s: want\n-----\n%q\n-----\nbut got\n-----\n%q\n-----\n",
label, wantStr, got)
}
}
func ExampleEncoder_Encode() {
date, _ := time.Parse(time.RFC822, "14 Mar 10 18:00 UTC")
var config = map[string]interface{}{
"date": date,
"counts": []int{1, 1, 2, 3, 5, 8},
"hash": map[string]string{
"key1": "val1",
"key2": "val2",
},
}
buf := new(bytes.Buffer)
if err := NewEncoder(buf).Encode(config); err != nil {
log.Fatal(err)
}
fmt.Println(buf.String())
// Output:
// counts = [1, 1, 2, 3, 5, 8]
// date = 2010-03-14T18:00:00Z
//
// [hash]
// key1 = "val1"
// key2 = "val2"
}

19
vendor/github.com/BurntSushi/toml/encoding_types.go generated vendored Normal file
View file

@ -0,0 +1,19 @@
// +build go1.2
package toml
// In order to support Go 1.1, we define our own TextMarshaler and
// TextUnmarshaler types. For Go 1.2+, we just alias them with the
// standard library interfaces.
import (
"encoding"
)
// TextMarshaler is a synonym for encoding.TextMarshaler. It is defined here
// so that Go 1.1 can be supported.
type TextMarshaler encoding.TextMarshaler
// TextUnmarshaler is a synonym for encoding.TextUnmarshaler. It is defined
// here so that Go 1.1 can be supported.
type TextUnmarshaler encoding.TextUnmarshaler

View file

@ -0,0 +1,18 @@
// +build !go1.2
package toml
// These interfaces were introduced in Go 1.2, so we add them manually when
// compiling for Go 1.1.
// TextMarshaler is a synonym for encoding.TextMarshaler. It is defined here
// so that Go 1.1 can be supported.
type TextMarshaler interface {
MarshalText() (text []byte, err error)
}
// TextUnmarshaler is a synonym for encoding.TextUnmarshaler. It is defined
// here so that Go 1.1 can be supported.
type TextUnmarshaler interface {
UnmarshalText(text []byte) error
}

874
vendor/github.com/BurntSushi/toml/lex.go generated vendored Normal file
View file

@ -0,0 +1,874 @@
package toml
import (
"fmt"
"strings"
"unicode/utf8"
)
type itemType int
const (
itemError itemType = iota
itemNIL // used in the parser to indicate no type
itemEOF
itemText
itemString
itemRawString
itemMultilineString
itemRawMultilineString
itemBool
itemInteger
itemFloat
itemDatetime
itemArray // the start of an array
itemArrayEnd
itemTableStart
itemTableEnd
itemArrayTableStart
itemArrayTableEnd
itemKeyStart
itemCommentStart
)
const (
eof = 0
tableStart = '['
tableEnd = ']'
arrayTableStart = '['
arrayTableEnd = ']'
tableSep = '.'
keySep = '='
arrayStart = '['
arrayEnd = ']'
arrayValTerm = ','
commentStart = '#'
stringStart = '"'
stringEnd = '"'
rawStringStart = '\''
rawStringEnd = '\''
)
type stateFn func(lx *lexer) stateFn
type lexer struct {
input string
start int
pos int
width int
line int
state stateFn
items chan item
// A stack of state functions used to maintain context.
// The idea is to reuse parts of the state machine in various places.
// For example, values can appear at the top level or within arbitrarily
// nested arrays. The last state on the stack is used after a value has
// been lexed. Similarly for comments.
stack []stateFn
}
type item struct {
typ itemType
val string
line int
}
func (lx *lexer) nextItem() item {
for {
select {
case item := <-lx.items:
return item
default:
lx.state = lx.state(lx)
}
}
}
func lex(input string) *lexer {
lx := &lexer{
input: input + "\n",
state: lexTop,
line: 1,
items: make(chan item, 10),
stack: make([]stateFn, 0, 10),
}
return lx
}
func (lx *lexer) push(state stateFn) {
lx.stack = append(lx.stack, state)
}
func (lx *lexer) pop() stateFn {
if len(lx.stack) == 0 {
return lx.errorf("BUG in lexer: no states to pop.")
}
last := lx.stack[len(lx.stack)-1]
lx.stack = lx.stack[0 : len(lx.stack)-1]
return last
}
func (lx *lexer) current() string {
return lx.input[lx.start:lx.pos]
}
func (lx *lexer) emit(typ itemType) {
lx.items <- item{typ, lx.current(), lx.line}
lx.start = lx.pos
}
func (lx *lexer) emitTrim(typ itemType) {
lx.items <- item{typ, strings.TrimSpace(lx.current()), lx.line}
lx.start = lx.pos
}
func (lx *lexer) next() (r rune) {
if lx.pos >= len(lx.input) {
lx.width = 0
return eof
}
if lx.input[lx.pos] == '\n' {
lx.line++
}
r, lx.width = utf8.DecodeRuneInString(lx.input[lx.pos:])
lx.pos += lx.width
return r
}
// ignore skips over the pending input before this point.
func (lx *lexer) ignore() {
lx.start = lx.pos
}
// backup steps back one rune. Can be called only once per call of next.
func (lx *lexer) backup() {
lx.pos -= lx.width
if lx.pos < len(lx.input) && lx.input[lx.pos] == '\n' {
lx.line--
}
}
// accept consumes the next rune if it's equal to `valid`.
func (lx *lexer) accept(valid rune) bool {
if lx.next() == valid {
return true
}
lx.backup()
return false
}
// peek returns but does not consume the next rune in the input.
func (lx *lexer) peek() rune {
r := lx.next()
lx.backup()
return r
}
// errorf stops all lexing by emitting an error and returning `nil`.
// Note that any value that is a character is escaped if it's a special
// character (new lines, tabs, etc.).
func (lx *lexer) errorf(format string, values ...interface{}) stateFn {
lx.items <- item{
itemError,
fmt.Sprintf(format, values...),
lx.line,
}
return nil
}
// lexTop consumes elements at the top level of TOML data.
func lexTop(lx *lexer) stateFn {
r := lx.next()
if isWhitespace(r) || isNL(r) {
return lexSkip(lx, lexTop)
}
switch r {
case commentStart:
lx.push(lexTop)
return lexCommentStart
case tableStart:
return lexTableStart
case eof:
if lx.pos > lx.start {
return lx.errorf("Unexpected EOF.")
}
lx.emit(itemEOF)
return nil
}
// At this point, the only valid item can be a key, so we back up
// and let the key lexer do the rest.
lx.backup()
lx.push(lexTopEnd)
return lexKeyStart
}
// lexTopEnd is entered whenever a top-level item has been consumed. (A value
// or a table.) It must see only whitespace, and will turn back to lexTop
// upon a new line. If it sees EOF, it will quit the lexer successfully.
func lexTopEnd(lx *lexer) stateFn {
r := lx.next()
switch {
case r == commentStart:
// a comment will read to a new line for us.
lx.push(lexTop)
return lexCommentStart
case isWhitespace(r):
return lexTopEnd
case isNL(r):
lx.ignore()
return lexTop
case r == eof:
lx.ignore()
return lexTop
}
return lx.errorf("Expected a top-level item to end with a new line, "+
"comment or EOF, but got %q instead.", r)
}
// lexTable lexes the beginning of a table. Namely, it makes sure that
// it starts with a character other than '.' and ']'.
// It assumes that '[' has already been consumed.
// It also handles the case that this is an item in an array of tables.
// e.g., '[[name]]'.
func lexTableStart(lx *lexer) stateFn {
if lx.peek() == arrayTableStart {
lx.next()
lx.emit(itemArrayTableStart)
lx.push(lexArrayTableEnd)
} else {
lx.emit(itemTableStart)
lx.push(lexTableEnd)
}
return lexTableNameStart
}
func lexTableEnd(lx *lexer) stateFn {
lx.emit(itemTableEnd)
return lexTopEnd
}
func lexArrayTableEnd(lx *lexer) stateFn {
if r := lx.next(); r != arrayTableEnd {
return lx.errorf("Expected end of table array name delimiter %q, "+
"but got %q instead.", arrayTableEnd, r)
}
lx.emit(itemArrayTableEnd)
return lexTopEnd
}
func lexTableNameStart(lx *lexer) stateFn {
switch r := lx.peek(); {
case r == tableEnd || r == eof:
return lx.errorf("Unexpected end of table name. (Table names cannot " +
"be empty.)")
case r == tableSep:
return lx.errorf("Unexpected table separator. (Table names cannot " +
"be empty.)")
case r == stringStart || r == rawStringStart:
lx.ignore()
lx.push(lexTableNameEnd)
return lexValue // reuse string lexing
case isWhitespace(r):
return lexTableNameStart
default:
return lexBareTableName
}
}
// lexTableName lexes the name of a table. It assumes that at least one
// valid character for the table has already been read.
func lexBareTableName(lx *lexer) stateFn {
switch r := lx.next(); {
case isBareKeyChar(r):
return lexBareTableName
case r == tableSep || r == tableEnd:
lx.backup()
lx.emitTrim(itemText)
return lexTableNameEnd
default:
return lx.errorf("Bare keys cannot contain %q.", r)
}
}
// lexTableNameEnd reads the end of a piece of a table name, optionally
// consuming whitespace.
func lexTableNameEnd(lx *lexer) stateFn {
switch r := lx.next(); {
case isWhitespace(r):
return lexTableNameEnd
case r == tableSep:
lx.ignore()
return lexTableNameStart
case r == tableEnd:
return lx.pop()
default:
return lx.errorf("Expected '.' or ']' to end table name, but got %q "+
"instead.", r)
}
}
// lexKeyStart consumes a key name up until the first non-whitespace character.
// lexKeyStart will ignore whitespace.
func lexKeyStart(lx *lexer) stateFn {
r := lx.peek()
switch {
case r == keySep:
return lx.errorf("Unexpected key separator %q.", keySep)
case isWhitespace(r) || isNL(r):
lx.next()
return lexSkip(lx, lexKeyStart)
case r == stringStart || r == rawStringStart:
lx.ignore()
lx.emit(itemKeyStart)
lx.push(lexKeyEnd)
return lexValue // reuse string lexing
default:
lx.ignore()
lx.emit(itemKeyStart)
return lexBareKey
}
}
// lexBareKey consumes the text of a bare key. Assumes that the first character
// (which is not whitespace) has not yet been consumed.
func lexBareKey(lx *lexer) stateFn {
switch r := lx.next(); {
case isBareKeyChar(r):
return lexBareKey
case isWhitespace(r):
lx.emitTrim(itemText)
return lexKeyEnd
case r == keySep:
lx.backup()
lx.emitTrim(itemText)
return lexKeyEnd
default:
return lx.errorf("Bare keys cannot contain %q.", r)
}
}
// lexKeyEnd consumes the end of a key and trims whitespace (up to the key
// separator).
func lexKeyEnd(lx *lexer) stateFn {
switch r := lx.next(); {
case r == keySep:
return lexSkip(lx, lexValue)
case isWhitespace(r):
return lexSkip(lx, lexKeyEnd)
default:
return lx.errorf("Expected key separator %q, but got %q instead.",
keySep, r)
}
}
// lexValue starts the consumption of a value anywhere a value is expected.
// lexValue will ignore whitespace.
// After a value is lexed, the last state on the next is popped and returned.
func lexValue(lx *lexer) stateFn {
// We allow whitespace to precede a value, but NOT new lines.
// In array syntax, the array states are responsible for ignoring new
// lines.
r := lx.next()
if isWhitespace(r) {
return lexSkip(lx, lexValue)
}
switch {
case r == arrayStart:
lx.ignore()
lx.emit(itemArray)
return lexArrayValue
case r == stringStart:
if lx.accept(stringStart) {
if lx.accept(stringStart) {
lx.ignore() // Ignore """
return lexMultilineString
}
lx.backup()
}
lx.ignore() // ignore the '"'
return lexString
case r == rawStringStart:
if lx.accept(rawStringStart) {
if lx.accept(rawStringStart) {
lx.ignore() // Ignore """
return lexMultilineRawString
}
lx.backup()
}
lx.ignore() // ignore the "'"
return lexRawString
case r == 't':
return lexTrue
case r == 'f':
return lexFalse
case r == '-':
return lexNumberStart
case isDigit(r):
lx.backup() // avoid an extra state and use the same as above
return lexNumberOrDateStart
case r == '.': // special error case, be kind to users
return lx.errorf("Floats must start with a digit, not '.'.")
}
return lx.errorf("Expected value but found %q instead.", r)
}
// lexArrayValue consumes one value in an array. It assumes that '[' or ','
// have already been consumed. All whitespace and new lines are ignored.
func lexArrayValue(lx *lexer) stateFn {
r := lx.next()
switch {
case isWhitespace(r) || isNL(r):
return lexSkip(lx, lexArrayValue)
case r == commentStart:
lx.push(lexArrayValue)
return lexCommentStart
case r == arrayValTerm:
return lx.errorf("Unexpected array value terminator %q.",
arrayValTerm)
case r == arrayEnd:
return lexArrayEnd
}
lx.backup()
lx.push(lexArrayValueEnd)
return lexValue
}
// lexArrayValueEnd consumes the cruft between values of an array. Namely,
// it ignores whitespace and expects either a ',' or a ']'.
func lexArrayValueEnd(lx *lexer) stateFn {
r := lx.next()
switch {
case isWhitespace(r) || isNL(r):
return lexSkip(lx, lexArrayValueEnd)
case r == commentStart:
lx.push(lexArrayValueEnd)
return lexCommentStart
case r == arrayValTerm:
lx.ignore()
return lexArrayValue // move on to the next value
case r == arrayEnd:
return lexArrayEnd
}
return lx.errorf("Expected an array value terminator %q or an array "+
"terminator %q, but got %q instead.", arrayValTerm, arrayEnd, r)
}
// lexArrayEnd finishes the lexing of an array. It assumes that a ']' has
// just been consumed.
func lexArrayEnd(lx *lexer) stateFn {
lx.ignore()
lx.emit(itemArrayEnd)
return lx.pop()
}
// lexString consumes the inner contents of a string. It assumes that the
// beginning '"' has already been consumed and ignored.
func lexString(lx *lexer) stateFn {
r := lx.next()
switch {
case isNL(r):
return lx.errorf("Strings cannot contain new lines.")
case r == '\\':
lx.push(lexString)
return lexStringEscape
case r == stringEnd:
lx.backup()
lx.emit(itemString)
lx.next()
lx.ignore()
return lx.pop()
}
return lexString
}
// lexMultilineString consumes the inner contents of a string. It assumes that
// the beginning '"""' has already been consumed and ignored.
func lexMultilineString(lx *lexer) stateFn {
r := lx.next()
switch {
case r == '\\':
return lexMultilineStringEscape
case r == stringEnd:
if lx.accept(stringEnd) {
if lx.accept(stringEnd) {
lx.backup()
lx.backup()
lx.backup()
lx.emit(itemMultilineString)
lx.next()
lx.next()
lx.next()
lx.ignore()
return lx.pop()
}
lx.backup()
}
}
return lexMultilineString
}
// lexRawString consumes a raw string. Nothing can be escaped in such a string.
// It assumes that the beginning "'" has already been consumed and ignored.
func lexRawString(lx *lexer) stateFn {
r := lx.next()
switch {
case isNL(r):
return lx.errorf("Strings cannot contain new lines.")
case r == rawStringEnd:
lx.backup()
lx.emit(itemRawString)
lx.next()
lx.ignore()
return lx.pop()
}
return lexRawString
}
// lexMultilineRawString consumes a raw string. Nothing can be escaped in such
// a string. It assumes that the beginning "'" has already been consumed and
// ignored.
func lexMultilineRawString(lx *lexer) stateFn {
r := lx.next()
switch {
case r == rawStringEnd:
if lx.accept(rawStringEnd) {
if lx.accept(rawStringEnd) {
lx.backup()
lx.backup()
lx.backup()
lx.emit(itemRawMultilineString)
lx.next()
lx.next()
lx.next()
lx.ignore()
return lx.pop()
}
lx.backup()
}
}
return lexMultilineRawString
}
// lexMultilineStringEscape consumes an escaped character. It assumes that the
// preceding '\\' has already been consumed.
func lexMultilineStringEscape(lx *lexer) stateFn {
// Handle the special case first:
if isNL(lx.next()) {
lx.next()
return lexMultilineString
} else {
lx.backup()
lx.push(lexMultilineString)
return lexStringEscape(lx)
}
}
func lexStringEscape(lx *lexer) stateFn {
r := lx.next()
switch r {
case 'b':
fallthrough
case 't':
fallthrough
case 'n':
fallthrough
case 'f':
fallthrough
case 'r':
fallthrough
case '"':
fallthrough
case '\\':
return lx.pop()
case 'u':
return lexShortUnicodeEscape
case 'U':
return lexLongUnicodeEscape
}
return lx.errorf("Invalid escape character %q. Only the following "+
"escape characters are allowed: "+
"\\b, \\t, \\n, \\f, \\r, \\\", \\/, \\\\, "+
"\\uXXXX and \\UXXXXXXXX.", r)
}
func lexShortUnicodeEscape(lx *lexer) stateFn {
var r rune
for i := 0; i < 4; i++ {
r = lx.next()
if !isHexadecimal(r) {
return lx.errorf("Expected four hexadecimal digits after '\\u', "+
"but got '%s' instead.", lx.current())
}
}
return lx.pop()
}
func lexLongUnicodeEscape(lx *lexer) stateFn {
var r rune
for i := 0; i < 8; i++ {
r = lx.next()
if !isHexadecimal(r) {
return lx.errorf("Expected eight hexadecimal digits after '\\U', "+
"but got '%s' instead.", lx.current())
}
}
return lx.pop()
}
// lexNumberOrDateStart consumes either a (positive) integer, float or
// datetime. It assumes that NO negative sign has been consumed.
func lexNumberOrDateStart(lx *lexer) stateFn {
r := lx.next()
if !isDigit(r) {
if r == '.' {
return lx.errorf("Floats must start with a digit, not '.'.")
} else {
return lx.errorf("Expected a digit but got %q.", r)
}
}
return lexNumberOrDate
}
// lexNumberOrDate consumes either a (positive) integer, float or datetime.
func lexNumberOrDate(lx *lexer) stateFn {
r := lx.next()
switch {
case r == '-':
if lx.pos-lx.start != 5 {
return lx.errorf("All ISO8601 dates must be in full Zulu form.")
}
return lexDateAfterYear
case isDigit(r):
return lexNumberOrDate
case r == '.':
return lexFloatStart
}
lx.backup()
lx.emit(itemInteger)
return lx.pop()
}
// lexDateAfterYear consumes a full Zulu Datetime in ISO8601 format.
// It assumes that "YYYY-" has already been consumed.
func lexDateAfterYear(lx *lexer) stateFn {
formats := []rune{
// digits are '0'.
// everything else is direct equality.
'0', '0', '-', '0', '0',
'T',
'0', '0', ':', '0', '0', ':', '0', '0',
'Z',
}
for _, f := range formats {
r := lx.next()
if f == '0' {
if !isDigit(r) {
return lx.errorf("Expected digit in ISO8601 datetime, "+
"but found %q instead.", r)
}
} else if f != r {
return lx.errorf("Expected %q in ISO8601 datetime, "+
"but found %q instead.", f, r)
}
}
lx.emit(itemDatetime)
return lx.pop()
}
// lexNumberStart consumes either an integer or a float. It assumes that
// a negative sign has already been read, but that *no* digits have been
// consumed. lexNumberStart will move to the appropriate integer or float
// states.
func lexNumberStart(lx *lexer) stateFn {
// we MUST see a digit. Even floats have to start with a digit.
r := lx.next()
if !isDigit(r) {
if r == '.' {
return lx.errorf("Floats must start with a digit, not '.'.")
} else {
return lx.errorf("Expected a digit but got %q.", r)
}
}
return lexNumber
}
// lexNumber consumes an integer or a float after seeing the first digit.
func lexNumber(lx *lexer) stateFn {
r := lx.next()
switch {
case isDigit(r):
return lexNumber
case r == '.':
return lexFloatStart
}
lx.backup()
lx.emit(itemInteger)
return lx.pop()
}
// lexFloatStart starts the consumption of digits of a float after a '.'.
// Namely, at least one digit is required.
func lexFloatStart(lx *lexer) stateFn {
r := lx.next()
if !isDigit(r) {
return lx.errorf("Floats must have a digit after the '.', but got "+
"%q instead.", r)
}
return lexFloat
}
// lexFloat consumes the digits of a float after a '.'.
// Assumes that one digit has been consumed after a '.' already.
func lexFloat(lx *lexer) stateFn {
r := lx.next()
if isDigit(r) {
return lexFloat
}
lx.backup()
lx.emit(itemFloat)
return lx.pop()
}
// lexConst consumes the s[1:] in s. It assumes that s[0] has already been
// consumed.
func lexConst(lx *lexer, s string) stateFn {
for i := range s[1:] {
if r := lx.next(); r != rune(s[i+1]) {
return lx.errorf("Expected %q, but found %q instead.", s[:i+1],
s[:i]+string(r))
}
}
return nil
}
// lexTrue consumes the "rue" in "true". It assumes that 't' has already
// been consumed.
func lexTrue(lx *lexer) stateFn {
if fn := lexConst(lx, "true"); fn != nil {
return fn
}
lx.emit(itemBool)
return lx.pop()
}
// lexFalse consumes the "alse" in "false". It assumes that 'f' has already
// been consumed.
func lexFalse(lx *lexer) stateFn {
if fn := lexConst(lx, "false"); fn != nil {
return fn
}
lx.emit(itemBool)
return lx.pop()
}
// lexCommentStart begins the lexing of a comment. It will emit
// itemCommentStart and consume no characters, passing control to lexComment.
func lexCommentStart(lx *lexer) stateFn {
lx.ignore()
lx.emit(itemCommentStart)
return lexComment
}
// lexComment lexes an entire comment. It assumes that '#' has been consumed.
// It will consume *up to* the first new line character, and pass control
// back to the last state on the stack.
func lexComment(lx *lexer) stateFn {
r := lx.peek()
if isNL(r) || r == eof {
lx.emit(itemText)
return lx.pop()
}
lx.next()
return lexComment
}
// lexSkip ignores all slurped input and moves on to the next state.
func lexSkip(lx *lexer, nextState stateFn) stateFn {
return func(lx *lexer) stateFn {
lx.ignore()
return nextState
}
}
// isWhitespace returns true if `r` is a whitespace character according
// to the spec.
func isWhitespace(r rune) bool {
return r == '\t' || r == ' '
}
func isNL(r rune) bool {
return r == '\n' || r == '\r'
}
func isDigit(r rune) bool {
return r >= '0' && r <= '9'
}
func isHexadecimal(r rune) bool {
return (r >= '0' && r <= '9') ||
(r >= 'a' && r <= 'f') ||
(r >= 'A' && r <= 'F')
}
func isBareKeyChar(r rune) bool {
return (r >= 'A' && r <= 'Z') ||
(r >= 'a' && r <= 'z') ||
(r >= '0' && r <= '9') ||
r == '_' ||
r == '-'
}
func (itype itemType) String() string {
switch itype {
case itemError:
return "Error"
case itemNIL:
return "NIL"
case itemEOF:
return "EOF"
case itemText:
return "Text"
case itemString:
return "String"
case itemRawString:
return "String"
case itemMultilineString:
return "String"
case itemRawMultilineString:
return "String"
case itemBool:
return "Bool"
case itemInteger:
return "Integer"
case itemFloat:
return "Float"
case itemDatetime:
return "DateTime"
case itemTableStart:
return "TableStart"
case itemTableEnd:
return "TableEnd"
case itemKeyStart:
return "KeyStart"
case itemArray:
return "Array"
case itemArrayEnd:
return "ArrayEnd"
case itemCommentStart:
return "CommentStart"
}
panic(fmt.Sprintf("BUG: Unknown type '%d'.", int(itype)))
}
func (item item) String() string {
return fmt.Sprintf("(%s, %s)", item.typ.String(), item.val)
}

498
vendor/github.com/BurntSushi/toml/parse.go generated vendored Normal file
View file

@ -0,0 +1,498 @@
package toml
import (
"fmt"
"log"
"strconv"
"strings"
"time"
"unicode"
"unicode/utf8"
)
type parser struct {
mapping map[string]interface{}
types map[string]tomlType
lx *lexer
// A list of keys in the order that they appear in the TOML data.
ordered []Key
// the full key for the current hash in scope
context Key
// the base key name for everything except hashes
currentKey string
// rough approximation of line number
approxLine int
// A map of 'key.group.names' to whether they were created implicitly.
implicits map[string]bool
}
type parseError string
func (pe parseError) Error() string {
return string(pe)
}
func parse(data string) (p *parser, err error) {
defer func() {
if r := recover(); r != nil {
var ok bool
if err, ok = r.(parseError); ok {
return
}
panic(r)
}
}()
p = &parser{
mapping: make(map[string]interface{}),
types: make(map[string]tomlType),
lx: lex(data),
ordered: make([]Key, 0),
implicits: make(map[string]bool),
}
for {
item := p.next()
if item.typ == itemEOF {
break
}
p.topLevel(item)
}
return p, nil
}
func (p *parser) panicf(format string, v ...interface{}) {
msg := fmt.Sprintf("Near line %d (last key parsed '%s'): %s",
p.approxLine, p.current(), fmt.Sprintf(format, v...))
panic(parseError(msg))
}
func (p *parser) next() item {
it := p.lx.nextItem()
if it.typ == itemError {
p.panicf("%s", it.val)
}
return it
}
func (p *parser) bug(format string, v ...interface{}) {
log.Fatalf("BUG: %s\n\n", fmt.Sprintf(format, v...))
}
func (p *parser) expect(typ itemType) item {
it := p.next()
p.assertEqual(typ, it.typ)
return it
}
func (p *parser) assertEqual(expected, got itemType) {
if expected != got {
p.bug("Expected '%s' but got '%s'.", expected, got)
}
}
func (p *parser) topLevel(item item) {
switch item.typ {
case itemCommentStart:
p.approxLine = item.line
p.expect(itemText)
case itemTableStart:
kg := p.next()
p.approxLine = kg.line
var key Key
for ; kg.typ != itemTableEnd && kg.typ != itemEOF; kg = p.next() {
key = append(key, p.keyString(kg))
}
p.assertEqual(itemTableEnd, kg.typ)
p.establishContext(key, false)
p.setType("", tomlHash)
p.ordered = append(p.ordered, key)
case itemArrayTableStart:
kg := p.next()
p.approxLine = kg.line
var key Key
for ; kg.typ != itemArrayTableEnd && kg.typ != itemEOF; kg = p.next() {
key = append(key, p.keyString(kg))
}
p.assertEqual(itemArrayTableEnd, kg.typ)
p.establishContext(key, true)
p.setType("", tomlArrayHash)
p.ordered = append(p.ordered, key)
case itemKeyStart:
kname := p.next()
p.approxLine = kname.line
p.currentKey = p.keyString(kname)
val, typ := p.value(p.next())
p.setValue(p.currentKey, val)
p.setType(p.currentKey, typ)
p.ordered = append(p.ordered, p.context.add(p.currentKey))
p.currentKey = ""
default:
p.bug("Unexpected type at top level: %s", item.typ)
}
}
// Gets a string for a key (or part of a key in a table name).
func (p *parser) keyString(it item) string {
switch it.typ {
case itemText:
return it.val
case itemString, itemMultilineString,
itemRawString, itemRawMultilineString:
s, _ := p.value(it)
return s.(string)
default:
p.bug("Unexpected key type: %s", it.typ)
panic("unreachable")
}
}
// value translates an expected value from the lexer into a Go value wrapped
// as an empty interface.
func (p *parser) value(it item) (interface{}, tomlType) {
switch it.typ {
case itemString:
return p.replaceEscapes(it.val), p.typeOfPrimitive(it)
case itemMultilineString:
trimmed := stripFirstNewline(stripEscapedWhitespace(it.val))
return p.replaceEscapes(trimmed), p.typeOfPrimitive(it)
case itemRawString:
return it.val, p.typeOfPrimitive(it)
case itemRawMultilineString:
return stripFirstNewline(it.val), p.typeOfPrimitive(it)
case itemBool:
switch it.val {
case "true":
return true, p.typeOfPrimitive(it)
case "false":
return false, p.typeOfPrimitive(it)
}
p.bug("Expected boolean value, but got '%s'.", it.val)
case itemInteger:
num, err := strconv.ParseInt(it.val, 10, 64)
if err != nil {
// See comment below for floats describing why we make a
// distinction between a bug and a user error.
if e, ok := err.(*strconv.NumError); ok &&
e.Err == strconv.ErrRange {
p.panicf("Integer '%s' is out of the range of 64-bit "+
"signed integers.", it.val)
} else {
p.bug("Expected integer value, but got '%s'.", it.val)
}
}
return num, p.typeOfPrimitive(it)
case itemFloat:
num, err := strconv.ParseFloat(it.val, 64)
if err != nil {
// Distinguish float values. Normally, it'd be a bug if the lexer
// provides an invalid float, but it's possible that the float is
// out of range of valid values (which the lexer cannot determine).
// So mark the former as a bug but the latter as a legitimate user
// error.
//
// This is also true for integers.
if e, ok := err.(*strconv.NumError); ok &&
e.Err == strconv.ErrRange {
p.panicf("Float '%s' is out of the range of 64-bit "+
"IEEE-754 floating-point numbers.", it.val)
} else {
p.bug("Expected float value, but got '%s'.", it.val)
}
}
return num, p.typeOfPrimitive(it)
case itemDatetime:
t, err := time.Parse("2006-01-02T15:04:05Z", it.val)
if err != nil {
p.bug("Expected Zulu formatted DateTime, but got '%s'.", it.val)
}
return t, p.typeOfPrimitive(it)
case itemArray:
array := make([]interface{}, 0)
types := make([]tomlType, 0)
for it = p.next(); it.typ != itemArrayEnd; it = p.next() {
if it.typ == itemCommentStart {
p.expect(itemText)
continue
}
val, typ := p.value(it)
array = append(array, val)
types = append(types, typ)
}
return array, p.typeOfArray(types)
}
p.bug("Unexpected value type: %s", it.typ)
panic("unreachable")
}
// establishContext sets the current context of the parser,
// where the context is either a hash or an array of hashes. Which one is
// set depends on the value of the `array` parameter.
//
// Establishing the context also makes sure that the key isn't a duplicate, and
// will create implicit hashes automatically.
func (p *parser) establishContext(key Key, array bool) {
var ok bool
// Always start at the top level and drill down for our context.
hashContext := p.mapping
keyContext := make(Key, 0)
// We only need implicit hashes for key[0:-1]
for _, k := range key[0 : len(key)-1] {
_, ok = hashContext[k]
keyContext = append(keyContext, k)
// No key? Make an implicit hash and move on.
if !ok {
p.addImplicit(keyContext)
hashContext[k] = make(map[string]interface{})
}
// If the hash context is actually an array of tables, then set
// the hash context to the last element in that array.
//
// Otherwise, it better be a table, since this MUST be a key group (by
// virtue of it not being the last element in a key).
switch t := hashContext[k].(type) {
case []map[string]interface{}:
hashContext = t[len(t)-1]
case map[string]interface{}:
hashContext = t
default:
p.panicf("Key '%s' was already created as a hash.", keyContext)
}
}
p.context = keyContext
if array {
// If this is the first element for this array, then allocate a new
// list of tables for it.
k := key[len(key)-1]
if _, ok := hashContext[k]; !ok {
hashContext[k] = make([]map[string]interface{}, 0, 5)
}
// Add a new table. But make sure the key hasn't already been used
// for something else.
if hash, ok := hashContext[k].([]map[string]interface{}); ok {
hashContext[k] = append(hash, make(map[string]interface{}))
} else {
p.panicf("Key '%s' was already created and cannot be used as "+
"an array.", keyContext)
}
} else {
p.setValue(key[len(key)-1], make(map[string]interface{}))
}
p.context = append(p.context, key[len(key)-1])
}
// setValue sets the given key to the given value in the current context.
// It will make sure that the key hasn't already been defined, account for
// implicit key groups.
func (p *parser) setValue(key string, value interface{}) {
var tmpHash interface{}
var ok bool
hash := p.mapping
keyContext := make(Key, 0)
for _, k := range p.context {
keyContext = append(keyContext, k)
if tmpHash, ok = hash[k]; !ok {
p.bug("Context for key '%s' has not been established.", keyContext)
}
switch t := tmpHash.(type) {
case []map[string]interface{}:
// The context is a table of hashes. Pick the most recent table
// defined as the current hash.
hash = t[len(t)-1]
case map[string]interface{}:
hash = t
default:
p.bug("Expected hash to have type 'map[string]interface{}', but "+
"it has '%T' instead.", tmpHash)
}
}
keyContext = append(keyContext, key)
if _, ok := hash[key]; ok {
// Typically, if the given key has already been set, then we have
// to raise an error since duplicate keys are disallowed. However,
// it's possible that a key was previously defined implicitly. In this
// case, it is allowed to be redefined concretely. (See the
// `tests/valid/implicit-and-explicit-after.toml` test in `toml-test`.)
//
// But we have to make sure to stop marking it as an implicit. (So that
// another redefinition provokes an error.)
//
// Note that since it has already been defined (as a hash), we don't
// want to overwrite it. So our business is done.
if p.isImplicit(keyContext) {
p.removeImplicit(keyContext)
return
}
// Otherwise, we have a concrete key trying to override a previous
// key, which is *always* wrong.
p.panicf("Key '%s' has already been defined.", keyContext)
}
hash[key] = value
}
// setType sets the type of a particular value at a given key.
// It should be called immediately AFTER setValue.
//
// Note that if `key` is empty, then the type given will be applied to the
// current context (which is either a table or an array of tables).
func (p *parser) setType(key string, typ tomlType) {
keyContext := make(Key, 0, len(p.context)+1)
for _, k := range p.context {
keyContext = append(keyContext, k)
}
if len(key) > 0 { // allow type setting for hashes
keyContext = append(keyContext, key)
}
p.types[keyContext.String()] = typ
}
// addImplicit sets the given Key as having been created implicitly.
func (p *parser) addImplicit(key Key) {
p.implicits[key.String()] = true
}
// removeImplicit stops tagging the given key as having been implicitly
// created.
func (p *parser) removeImplicit(key Key) {
p.implicits[key.String()] = false
}
// isImplicit returns true if the key group pointed to by the key was created
// implicitly.
func (p *parser) isImplicit(key Key) bool {
return p.implicits[key.String()]
}
// current returns the full key name of the current context.
func (p *parser) current() string {
if len(p.currentKey) == 0 {
return p.context.String()
}
if len(p.context) == 0 {
return p.currentKey
}
return fmt.Sprintf("%s.%s", p.context, p.currentKey)
}
func stripFirstNewline(s string) string {
if len(s) == 0 || s[0] != '\n' {
return s
}
return s[1:len(s)]
}
func stripEscapedWhitespace(s string) string {
esc := strings.Split(s, "\\\n")
if len(esc) > 1 {
for i := 1; i < len(esc); i++ {
esc[i] = strings.TrimLeftFunc(esc[i], unicode.IsSpace)
}
}
return strings.Join(esc, "")
}
func (p *parser) replaceEscapes(str string) string {
var replaced []rune
s := []byte(str)
r := 0
for r < len(s) {
if s[r] != '\\' {
c, size := utf8.DecodeRune(s[r:])
r += size
replaced = append(replaced, c)
continue
}
r += 1
if r >= len(s) {
p.bug("Escape sequence at end of string.")
return ""
}
switch s[r] {
default:
p.bug("Expected valid escape code after \\, but got %q.", s[r])
return ""
case 'b':
replaced = append(replaced, rune(0x0008))
r += 1
case 't':
replaced = append(replaced, rune(0x0009))
r += 1
case 'n':
replaced = append(replaced, rune(0x000A))
r += 1
case 'f':
replaced = append(replaced, rune(0x000C))
r += 1
case 'r':
replaced = append(replaced, rune(0x000D))
r += 1
case '"':
replaced = append(replaced, rune(0x0022))
r += 1
case '\\':
replaced = append(replaced, rune(0x005C))
r += 1
case 'u':
// At this point, we know we have a Unicode escape of the form
// `uXXXX` at [r, r+5). (Because the lexer guarantees this
// for us.)
escaped := p.asciiEscapeToUnicode(s[r+1 : r+5])
replaced = append(replaced, escaped)
r += 5
case 'U':
// At this point, we know we have a Unicode escape of the form
// `uXXXX` at [r, r+9). (Because the lexer guarantees this
// for us.)
escaped := p.asciiEscapeToUnicode(s[r+1 : r+9])
replaced = append(replaced, escaped)
r += 9
}
}
return string(replaced)
}
func (p *parser) asciiEscapeToUnicode(bs []byte) rune {
s := string(bs)
hex, err := strconv.ParseUint(strings.ToLower(s), 16, 32)
if err != nil {
p.bug("Could not parse '%s' as a hexadecimal number, but the "+
"lexer claims it's OK: %s", s, err)
}
// BUG(burntsushi)
// I honestly don't understand how this works. I can't seem
// to find a way to make this fail. I figured this would fail on invalid
// UTF-8 characters like U+DCFF, but it doesn't.
if !utf8.ValidString(string(rune(hex))) {
p.panicf("Escaped character '\\u%s' is not valid UTF-8.", s)
}
return rune(hex)
}
func isStringType(ty itemType) bool {
return ty == itemString || ty == itemMultilineString ||
ty == itemRawString || ty == itemRawMultilineString
}

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vendor/github.com/BurntSushi/toml/session.vim generated vendored Normal file
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au BufWritePost *.go silent!make tags > /dev/null 2>&1

91
vendor/github.com/BurntSushi/toml/type_check.go generated vendored Normal file
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package toml
// tomlType represents any Go type that corresponds to a TOML type.
// While the first draft of the TOML spec has a simplistic type system that
// probably doesn't need this level of sophistication, we seem to be militating
// toward adding real composite types.
type tomlType interface {
typeString() string
}
// typeEqual accepts any two types and returns true if they are equal.
func typeEqual(t1, t2 tomlType) bool {
if t1 == nil || t2 == nil {
return false
}
return t1.typeString() == t2.typeString()
}
func typeIsHash(t tomlType) bool {
return typeEqual(t, tomlHash) || typeEqual(t, tomlArrayHash)
}
type tomlBaseType string
func (btype tomlBaseType) typeString() string {
return string(btype)
}
func (btype tomlBaseType) String() string {
return btype.typeString()
}
var (
tomlInteger tomlBaseType = "Integer"
tomlFloat tomlBaseType = "Float"
tomlDatetime tomlBaseType = "Datetime"
tomlString tomlBaseType = "String"
tomlBool tomlBaseType = "Bool"
tomlArray tomlBaseType = "Array"
tomlHash tomlBaseType = "Hash"
tomlArrayHash tomlBaseType = "ArrayHash"
)
// typeOfPrimitive returns a tomlType of any primitive value in TOML.
// Primitive values are: Integer, Float, Datetime, String and Bool.
//
// Passing a lexer item other than the following will cause a BUG message
// to occur: itemString, itemBool, itemInteger, itemFloat, itemDatetime.
func (p *parser) typeOfPrimitive(lexItem item) tomlType {
switch lexItem.typ {
case itemInteger:
return tomlInteger
case itemFloat:
return tomlFloat
case itemDatetime:
return tomlDatetime
case itemString:
return tomlString
case itemMultilineString:
return tomlString
case itemRawString:
return tomlString
case itemRawMultilineString:
return tomlString
case itemBool:
return tomlBool
}
p.bug("Cannot infer primitive type of lex item '%s'.", lexItem)
panic("unreachable")
}
// typeOfArray returns a tomlType for an array given a list of types of its
// values.
//
// In the current spec, if an array is homogeneous, then its type is always
// "Array". If the array is not homogeneous, an error is generated.
func (p *parser) typeOfArray(types []tomlType) tomlType {
// Empty arrays are cool.
if len(types) == 0 {
return tomlArray
}
theType := types[0]
for _, t := range types[1:] {
if !typeEqual(theType, t) {
p.panicf("Array contains values of type '%s' and '%s', but "+
"arrays must be homogeneous.", theType, t)
}
}
return tomlArray
}

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vendor/github.com/BurntSushi/toml/type_fields.go generated vendored Normal file
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package toml
// Struct field handling is adapted from code in encoding/json:
//
// Copyright 2010 The Go Authors. All rights reserved.
// Use of this source code is governed by a BSD-style
// license that can be found in the Go distribution.
import (
"reflect"
"sort"
"sync"
)
// A field represents a single field found in a struct.
type field struct {
name string // the name of the field (`toml` tag included)
tag bool // whether field has a `toml` tag
index []int // represents the depth of an anonymous field
typ reflect.Type // the type of the field
}
// byName sorts field by name, breaking ties with depth,
// then breaking ties with "name came from toml tag", then
// breaking ties with index sequence.
type byName []field
func (x byName) Len() int { return len(x) }
func (x byName) Swap(i, j int) { x[i], x[j] = x[j], x[i] }
func (x byName) Less(i, j int) bool {
if x[i].name != x[j].name {
return x[i].name < x[j].name
}
if len(x[i].index) != len(x[j].index) {
return len(x[i].index) < len(x[j].index)
}
if x[i].tag != x[j].tag {
return x[i].tag
}
return byIndex(x).Less(i, j)
}
// byIndex sorts field by index sequence.
type byIndex []field
func (x byIndex) Len() int { return len(x) }
func (x byIndex) Swap(i, j int) { x[i], x[j] = x[j], x[i] }
func (x byIndex) Less(i, j int) bool {
for k, xik := range x[i].index {
if k >= len(x[j].index) {
return false
}
if xik != x[j].index[k] {
return xik < x[j].index[k]
}
}
return len(x[i].index) < len(x[j].index)
}
// typeFields returns a list of fields that TOML should recognize for the given
// type. The algorithm is breadth-first search over the set of structs to
// include - the top struct and then any reachable anonymous structs.
func typeFields(t reflect.Type) []field {
// Anonymous fields to explore at the current level and the next.
current := []field{}
next := []field{{typ: t}}
// Count of queued names for current level and the next.
count := map[reflect.Type]int{}
nextCount := map[reflect.Type]int{}
// Types already visited at an earlier level.
visited := map[reflect.Type]bool{}
// Fields found.
var fields []field
for len(next) > 0 {
current, next = next, current[:0]
count, nextCount = nextCount, map[reflect.Type]int{}
for _, f := range current {
if visited[f.typ] {
continue
}
visited[f.typ] = true
// Scan f.typ for fields to include.
for i := 0; i < f.typ.NumField(); i++ {
sf := f.typ.Field(i)
if sf.PkgPath != "" { // unexported
continue
}
name := sf.Tag.Get("toml")
if name == "-" {
continue
}
index := make([]int, len(f.index)+1)
copy(index, f.index)
index[len(f.index)] = i
ft := sf.Type
if ft.Name() == "" && ft.Kind() == reflect.Ptr {
// Follow pointer.
ft = ft.Elem()
}
// Record found field and index sequence.
if name != "" || !sf.Anonymous || ft.Kind() != reflect.Struct {
tagged := name != ""
if name == "" {
name = sf.Name
}
fields = append(fields, field{name, tagged, index, ft})
if count[f.typ] > 1 {
// If there were multiple instances, add a second,
// so that the annihilation code will see a duplicate.
// It only cares about the distinction between 1 or 2,
// so don't bother generating any more copies.
fields = append(fields, fields[len(fields)-1])
}
continue
}
// Record new anonymous struct to explore in next round.
nextCount[ft]++
if nextCount[ft] == 1 {
f := field{name: ft.Name(), index: index, typ: ft}
next = append(next, f)
}
}
}
}
sort.Sort(byName(fields))
// Delete all fields that are hidden by the Go rules for embedded fields,
// except that fields with TOML tags are promoted.
// The fields are sorted in primary order of name, secondary order
// of field index length. Loop over names; for each name, delete
// hidden fields by choosing the one dominant field that survives.
out := fields[:0]
for advance, i := 0, 0; i < len(fields); i += advance {
// One iteration per name.
// Find the sequence of fields with the name of this first field.
fi := fields[i]
name := fi.name
for advance = 1; i+advance < len(fields); advance++ {
fj := fields[i+advance]
if fj.name != name {
break
}
}
if advance == 1 { // Only one field with this name
out = append(out, fi)
continue
}
dominant, ok := dominantField(fields[i : i+advance])
if ok {
out = append(out, dominant)
}
}
fields = out
sort.Sort(byIndex(fields))
return fields
}
// dominantField looks through the fields, all of which are known to
// have the same name, to find the single field that dominates the
// others using Go's embedding rules, modified by the presence of
// TOML tags. If there are multiple top-level fields, the boolean
// will be false: This condition is an error in Go and we skip all
// the fields.
func dominantField(fields []field) (field, bool) {
// The fields are sorted in increasing index-length order. The winner
// must therefore be one with the shortest index length. Drop all
// longer entries, which is easy: just truncate the slice.
length := len(fields[0].index)
tagged := -1 // Index of first tagged field.
for i, f := range fields {
if len(f.index) > length {
fields = fields[:i]
break
}
if f.tag {
if tagged >= 0 {
// Multiple tagged fields at the same level: conflict.
// Return no field.
return field{}, false
}
tagged = i
}
}
if tagged >= 0 {
return fields[tagged], true
}
// All remaining fields have the same length. If there's more than one,
// we have a conflict (two fields named "X" at the same level) and we
// return no field.
if len(fields) > 1 {
return field{}, false
}
return fields[0], true
}
var fieldCache struct {
sync.RWMutex
m map[reflect.Type][]field
}
// cachedTypeFields is like typeFields but uses a cache to avoid repeated work.
func cachedTypeFields(t reflect.Type) []field {
fieldCache.RLock()
f := fieldCache.m[t]
fieldCache.RUnlock()
if f != nil {
return f
}
// Compute fields without lock.
// Might duplicate effort but won't hold other computations back.
f = typeFields(t)
if f == nil {
f = []field{}
}
fieldCache.Lock()
if fieldCache.m == nil {
fieldCache.m = map[reflect.Type][]field{}
}
fieldCache.m[t] = f
fieldCache.Unlock()
return f
}

22
vendor/github.com/bitly/go-notify/.gitignore generated vendored Normal file
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# Compiled Object files, Static and Dynamic libs (Shared Objects)
*.o
*.a
*.so
# Folders
_obj
_test
# Architecture specific extensions/prefixes
*.[568vq]
[568vq].out
*.cgo1.go
*.cgo2.c
_cgo_defun.c
_cgo_gotypes.go
_cgo_export.*
_testmain.go
*.exe

51
vendor/github.com/bitly/go-notify/README.md generated vendored Normal file
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## go-notify
Package notify enables independent components of an application to
observe notable events in a decoupled fashion.
It generalizes the pattern of *multiple* consumers of an event (ie: the
same message delivered to multiple channels) and obviates the need for
components to have intimate knowledge of each other (only `import
notify` and the name of the event are shared).
Example:
// producer of "my_event"
go func() {
for {
time.Sleep(time.Duration(1) * time.Second):
notify.Post("my_event", time.Now().Unix())
}
}()
// observer of "my_event" (normally some independent component that
// needs to be notified when "my_event" occurs)
myEventChan := make(chan interface{})
notify.Start("my_event", myEventChan)
go func() {
for {
data := <-myEventChan
log.Printf("MY_EVENT: %#v", data)
}
}()
### Functions
func Post(event string, data interface{}) error
Post a notification (arbitrary data) to the specified event
func PostTimeout(event string, data interface{}, timeout time.Duration) error
Post a notification to the specified event using the provided timeout for
any output channels that are blocking
func Start(event string, outputChan chan interface{})
Start observing the specified event via provided output channel
func Stop(event string, outputChan chan interface{}) error
Stop observing the specified event on the provided output channel
func StopAll(event string) error
Stop observing the specified event on all channels
func Version() string
returns the current version

130
vendor/github.com/bitly/go-notify/notify.go generated vendored Normal file
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// Package notify enables independent components of an application to
// observe notable events in a decoupled fashion.
//
// It generalizes the pattern of *multiple* consumers of an event (ie:
// the same message delivered to multiple channels) and obviates the need
// for components to have intimate knowledge of each other (only `import notify`
// and the name of the event are shared).
//
// Example:
// // producer of "my_event"
// go func() {
// for {
// time.Sleep(time.Duration(1) * time.Second):
// notify.Post("my_event", time.Now().Unix())
// }
// }()
//
// // observer of "my_event" (normally some independent component that
// // needs to be notified when "my_event" occurs)
// myEventChan := make(chan interface{})
// notify.Start("my_event", myEventChan)
// go func() {
// for {
// data := <-myEventChan
// log.Printf("MY_EVENT: %#v", data)
// }
// }()
package notify
import (
"errors"
"sync"
"time"
)
const E_NOT_FOUND = "E_NOT_FOUND"
// returns the current version
func Version() string {
return "0.2"
}
// internal mapping of event names to observing channels
var events = make(map[string][]chan interface{})
// mutex for touching the event map
var rwMutex sync.RWMutex
// Start observing the specified event via provided output channel
func Start(event string, outputChan chan interface{}) {
rwMutex.Lock()
defer rwMutex.Unlock()
events[event] = append(events[event], outputChan)
}
// Stop observing the specified event on the provided output channel
func Stop(event string, outputChan chan interface{}) error {
rwMutex.Lock()
defer rwMutex.Unlock()
newArray := make([]chan interface{}, 0)
outChans, ok := events[event]
if !ok {
return errors.New(E_NOT_FOUND)
}
for _, ch := range outChans {
if ch != outputChan {
newArray = append(newArray, ch)
} else {
close(ch)
}
}
events[event] = newArray
return nil
}
// Stop observing the specified event on all channels
func StopAll(event string) error {
rwMutex.Lock()
defer rwMutex.Unlock()
outChans, ok := events[event]
if !ok {
return errors.New(E_NOT_FOUND)
}
for _, ch := range outChans {
close(ch)
}
delete(events, event)
return nil
}
// Post a notification (arbitrary data) to the specified event
func Post(event string, data interface{}) error {
rwMutex.RLock()
defer rwMutex.RUnlock()
outChans, ok := events[event]
if !ok {
return errors.New(E_NOT_FOUND)
}
for _, outputChan := range outChans {
outputChan <- data
}
return nil
}
// Post a notification to the specified event using the provided timeout for
// any output channels that are blocking
func PostTimeout(event string, data interface{}, timeout time.Duration) error {
rwMutex.RLock()
defer rwMutex.RUnlock()
outChans, ok := events[event]
if !ok {
return errors.New(E_NOT_FOUND)
}
for _, outputChan := range outChans {
select {
case outputChan <- data:
case <-time.After(timeout):
}
}
return nil
}

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/*
Package statsd provides a StatsD client implementation that is safe for
concurrent use by multiple goroutines and for efficiency can be created and
reused.
Example usage:
// first create a client
client, err := statsd.New("127.0.0.1:8125", "test-client")
// handle any errors
if err != nil {
log.Fatal(err)
}
// make sure to clean up
defer client.Close()
// Send a stat
err = client.Inc("stat1", 42, 1.0)
// handle any errors
if err != nil {
log.Printf("Error sending metric: %+v", err)
}
*/
package statsd

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package statsd
import (
"errors"
"fmt"
"math/rand"
"net"
)
type Statter interface {
Inc(stat string, value int64, rate float32) error
Dec(stat string, value int64, rate float32) error
Gauge(stat string, value int64, rate float32) error
GaugeDelta(stat string, value int64, rate float32) error
Timing(stat string, delta int64, rate float32) error
Raw(stat string, value string, rate float32) error
SetPrefix(prefix string)
Close() error
}
type Client struct {
// underlying connection
c net.PacketConn
// resolved udp address
ra *net.UDPAddr
// prefix for statsd name
prefix string
}
// Close closes the connection and cleans up.
func (s *Client) Close() error {
err := s.c.Close()
return err
}
// Increments a statsd count type.
// stat is a string name for the metric.
// value is the integer value
// rate is the sample rate (0.0 to 1.0)
func (s *Client) Inc(stat string, value int64, rate float32) error {
dap := fmt.Sprintf("%d|c", value)
return s.Raw(stat, dap, rate)
}
// Decrements a statsd count type.
// stat is a string name for the metric.
// value is the integer value.
// rate is the sample rate (0.0 to 1.0).
func (s *Client) Dec(stat string, value int64, rate float32) error {
return s.Inc(stat, -value, rate)
}
// Submits/Updates a statsd gauge type.
// stat is a string name for the metric.
// value is the integer value.
// rate is the sample rate (0.0 to 1.0).
func (s *Client) Gauge(stat string, value int64, rate float32) error {
dap := fmt.Sprintf("%d|g", value)
return s.Raw(stat, dap, rate)
}
// Submits a delta to a statsd gauge.
// stat is the string name for the metric.
// value is the (positive or negative) change.
// rate is the sample rate (0.0 to 1.0).
func (s *Client) GaugeDelta(stat string, value int64, rate float32) error {
dap := fmt.Sprintf("%+d|g", value)
return s.Raw(stat, dap, rate)
}
// Submits a statsd timing type.
// stat is a string name for the metric.
// value is the integer value.
// rate is the sample rate (0.0 to 1.0).
func (s *Client) Timing(stat string, delta int64, rate float32) error {
dap := fmt.Sprintf("%d|ms", delta)
return s.Raw(stat, dap, rate)
}
// Raw formats the statsd event data, handles sampling, prepares it,
// and sends it to the server.
// stat is the string name for the metric.
// value is a preformatted "raw" value string.
// rate is the sample rate (0.0 to 1.0).
func (s *Client) Raw(stat string, value string, rate float32) error {
if rate < 1 {
if rand.Float32() < rate {
value = fmt.Sprintf("%s|@%f", value, rate)
} else {
return nil
}
}
if s.prefix != "" {
stat = fmt.Sprintf("%s.%s", s.prefix, stat)
}
data := fmt.Sprintf("%s:%s", stat, value)
_, err := s.send([]byte(data))
if err != nil {
return err
}
return nil
}
// Sets/Updates the statsd client prefix
func (s *Client) SetPrefix(prefix string) {
s.prefix = prefix
}
// sends the data to the server endpoint
func (s *Client) send(data []byte) (int, error) {
// no need for locking here, as the underlying fdNet
// already serialized writes
n, err := s.c.(*net.UDPConn).WriteToUDP([]byte(data), s.ra)
if err != nil {
return 0, err
}
if n == 0 {
return n, errors.New("Wrote no bytes")
}
return n, nil
}
// Returns a pointer to a new Client, and an error.
// addr is a string of the format "hostname:port", and must be parsable by
// net.ResolveUDPAddr.
// prefix is the statsd client prefix. Can be "" if no prefix is desired.
func New(addr, prefix string) (*Client, error) {
c, err := net.ListenPacket("udp", ":0")
if err != nil {
return nil, err
}
ra, err := net.ResolveUDPAddr("udp", addr)
if err != nil {
return nil, err
}
client := &Client{
c: c,
ra: ra,
prefix: prefix}
return client, nil
}
// Compatibility alias
var Dial = New

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package statsd
import (
"bytes"
"log"
"net"
"reflect"
"testing"
"time"
)
var statsdPacketTests = []struct {
Prefix string
Method string
Stat string
Value int64
Rate float32
Expected string
}{
{"test", "Gauge", "gauge", 1, 1.0, "test.gauge:1|g"},
{"test", "Inc", "count", 1, 0.999999, "test.count:1|c|@0.999999"},
{"test", "Inc", "count", 1, 1.0, "test.count:1|c"},
{"test", "Dec", "count", 1, 1.0, "test.count:-1|c"},
{"test", "Timing", "timing", 1, 1.0, "test.timing:1|ms"},
{"", "Inc", "count", 1, 1.0, "count:1|c"},
{"", "GaugeDelta", "gauge", 1, 1.0, "gauge:+1|g"},
{"", "GaugeDelta", "gauge", -1, 1.0, "gauge:-1|g"},
}
func TestClient(t *testing.T) {
l, err := newUDPListener("127.0.0.1:0")
if err != nil {
t.Fatal(err)
}
defer l.Close()
for _, tt := range statsdPacketTests {
c, err := New(l.LocalAddr().String(), tt.Prefix)
if err != nil {
t.Fatal(err)
}
method := reflect.ValueOf(c).MethodByName(tt.Method)
e := method.Call([]reflect.Value{
reflect.ValueOf(tt.Stat),
reflect.ValueOf(tt.Value),
reflect.ValueOf(tt.Rate)})[0]
errInter := e.Interface()
if errInter != nil {
t.Fatal(errInter.(error))
}
data := make([]byte, 128)
_, _, err = l.ReadFrom(data)
if err != nil {
c.Close()
t.Fatal(err)
}
data = bytes.TrimRight(data, "\x00")
if bytes.Equal(data, []byte(tt.Expected)) != true {
c.Close()
t.Fatalf("%s got '%s' expected '%s'", tt.Method, data, tt.Expected)
}
c.Close()
}
}
func TestNoopClient(t *testing.T) {
l, err := newUDPListener("127.0.0.1:0")
if err != nil {
t.Fatal(err)
}
defer l.Close()
for _, tt := range statsdPacketTests {
c, err := NewNoop(l.LocalAddr().String(), tt.Prefix)
if err != nil {
t.Fatal(err)
}
method := reflect.ValueOf(c).MethodByName(tt.Method)
e := method.Call([]reflect.Value{
reflect.ValueOf(tt.Stat),
reflect.ValueOf(tt.Value),
reflect.ValueOf(tt.Rate)})[0]
errInter := e.Interface()
if errInter != nil {
t.Fatal(errInter.(error))
}
data := make([]byte, 128)
n, _, err := l.ReadFrom(data)
// this is expected to error, since there should
// be no udp data sent, so the read will time out
if err == nil || n != 0 {
c.Close()
t.Fatal(err)
}
c.Close()
}
}
func newUDPListener(addr string) (*net.UDPConn, error) {
l, err := net.ListenPacket("udp", addr)
if err != nil {
return nil, err
}
l.SetDeadline(time.Now().Add(100 * time.Millisecond))
l.SetReadDeadline(time.Now().Add(100 * time.Millisecond))
l.SetWriteDeadline(time.Now().Add(100 * time.Millisecond))
return l.(*net.UDPConn), nil
}
func ExampleClient() {
// first create a client
client, err := Dial("127.0.0.1:8125", "test-client")
// handle any errors
if err != nil {
log.Fatal(err)
}
// make sure to clean up
defer client.Close()
// Send a stat
err = client.Inc("stat1", 42, 1.0)
// handle any errors
if err != nil {
log.Printf("Error sending metric: %+v", err)
}
}
func ExampleNoopClient() {
// use interface so we can sub noop client if needed
var client Statter
var err error
// first try to create a real client
client, err = Dial("not-resolvable:8125", "test-client")
// Lets say real client creation fails, but you don't care enough about
// stats that you don't want your program to run. Just log an error and
// make a NoopClient instead
if err != nil {
log.Println("Remote endpoint did not resolve. Disabling stats", err)
client, err = NewNoop()
}
// make sure to clean up
defer client.Close()
// Send a stat
err = client.Inc("stat1", 42, 1.0)
// handle any errors
if err != nil {
log.Printf("Error sending metric: %+v", err)
}
}

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package statsd
type NoopClient struct {
// prefix for statsd name
prefix string
}
// Close closes the connection and cleans up.
func (s *NoopClient) Close() error {
return nil
}
// Increments a statsd count type.
// stat is a string name for the metric.
// value is the integer value
// rate is the sample rate (0.0 to 1.0)
func (s *NoopClient) Inc(stat string, value int64, rate float32) error {
return nil
}
// Decrements a statsd count type.
// stat is a string name for the metric.
// value is the integer value.
// rate is the sample rate (0.0 to 1.0).
func (s *NoopClient) Dec(stat string, value int64, rate float32) error {
return nil
}
// Submits/Updates a statsd gauge type.
// stat is a string name for the metric.
// value is the integer value.
// rate is the sample rate (0.0 to 1.0).
func (s *NoopClient) Gauge(stat string, value int64, rate float32) error {
return nil
}
// Submits a delta to a statsd gauge.
// stat is the string name for the metric.
// value is the (positive or negative) change.
// rate is the sample rate (0.0 to 1.0).
func (s *NoopClient) GaugeDelta(stat string, value int64, rate float32) error {
return nil
}
// Submits a statsd timing type.
// stat is a string name for the metric.
// value is the integer value.
// rate is the sample rate (0.0 to 1.0).
func (s *NoopClient) Timing(stat string, delta int64, rate float32) error {
return nil
}
// Raw formats the statsd event data, handles sampling, prepares it,
// and sends it to the server.
// stat is the string name for the metric.
// value is the preformatted "raw" value string.
// rate is the sample rate (0.0 to 1.0).
func (s *NoopClient) Raw(stat string, value string, rate float32) error {
return nil
}
// Sets/Updates the statsd client prefix
func (s *NoopClient) SetPrefix(prefix string) {
s.prefix = prefix
}
// Returns a pointer to a new NoopClient, and an error (always nil, just
// supplied to support api convention).
// Use variadic arguments to support identical format as New, or a more
// conventional no argument form.
func NewNoop(a ...interface{}) (*NoopClient, error) {
noopClient := &NoopClient{}
return noopClient, nil
}

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package main
import (
"github.com/cactus/go-statsd-client/statsd"
flags "github.com/jessevdk/go-flags"
"fmt"
"log"
"os"
"time"
)
func main() {
// command line flags
var opts struct {
HostPort string `long:"host" default:"127.0.0.1:8125" description:"host:port of statsd server"`
Prefix string `long:"prefix" default:"test-client" description:"Statsd prefix"`
StatType string `long:"type" default:"count" description:"stat type to send. Can be timing, count, guage"`
StatValue int64 `long:"value" default:"1" description:"Value to send"`
Name string `short:"n" long:"name" default:"counter" description:"stat name"`
Rate float32 `short:"r" long:"rate" default:"1.0" description:"sample rate"`
Volume int `short:"c" long:"count" default:"1000" description:"Number of stats to send. Volume."`
Noop bool `long:"noop" default:"false" description:"Use noop client"`
Duration time.Duration `short:"d" long:"duration" default:"10s" description:"How long to spread the volume across. Each second of duration volume/seconds events will be sent."`
}
// parse said flags
_, err := flags.Parse(&opts)
if err != nil {
if e, ok := err.(*flags.Error); ok {
if e.Type == flags.ErrHelp {
os.Exit(0)
}
}
fmt.Printf("Error: %+v\n", err)
os.Exit(1)
}
var client statsd.Statter
if !opts.Noop {
client, err = statsd.New(opts.HostPort, opts.Prefix)
if err != nil {
log.Fatal(err)
}
defer client.Close()
} else {
client, err = statsd.NewNoop(opts.HostPort, opts.Prefix)
}
var stat func(stat string, value int64, rate float32) error
switch opts.StatType {
case "count":
stat = func(stat string, value int64, rate float32) error {
return client.Inc(stat, value, rate)
}
case "gauge":
stat = func(stat string, value int64, rate float32) error {
return client.Gauge(stat, value, rate)
}
case "timing":
stat = func(stat string, value int64, rate float32) error {
return client.Timing(stat, value, rate)
}
default:
log.Fatal("Unsupported state type")
}
pertick := opts.Volume / int(opts.Duration.Seconds()) / 10
// add some extra tiem, because the first tick takes a while
ender := time.After(opts.Duration + 100*time.Millisecond)
c := time.Tick(time.Second / 10)
count := 0
for {
select {
case <-c:
for x := 0; x < pertick; x++ {
err := stat(opts.Name, opts.StatValue, opts.Rate)
if err != nil {
log.Printf("Got Error: %+v", err)
break
}
count += 1
}
case <-ender:
log.Printf("%d events called", count)
os.Exit(0)
return
}
}
}

24
vendor/github.com/cihub/seelog/LICENSE.txt generated vendored Normal file
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Copyright (c) 2012, Cloud Instruments Co., Ltd. <info@cin.io>
All rights reserved.
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions are met:
* Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
* Redistributions in binary form must reproduce the above copyright
notice, this list of conditions and the following disclaimer in the
documentation and/or other materials provided with the distribution.
* Neither the name of the Cloud Instruments Co., Ltd. nor the
names of its contributors may be used to endorse or promote products
derived from this software without specific prior written permission.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
DISCLAIMED. IN NO EVENT SHALL <COPYRIGHT HOLDER> BE LIABLE FOR ANY
DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.

113
vendor/github.com/cihub/seelog/README.markdown generated vendored Normal file
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Seelog
=======
Seelog is a powerful and easy-to-learn logging framework that provides functionality for flexible dispatching, filtering, and formatting log messages.
It is natively written in the [Go](http://golang.org/) programming language.
[![Build Status](https://drone.io/github.com/cihub/seelog/status.png)](https://drone.io/github.com/cihub/seelog/latest)
Features
------------------
* Xml configuring to be able to change logger parameters without recompilation
* Changing configurations on the fly without app restart
* Possibility to set different log configurations for different project files and functions
* Adjustable message formatting
* Simultaneous log output to multiple streams
* Choosing logger priority strategy to minimize performance hit
* Different output writers
* Console writer
* File writer
* Buffered writer (Chunk writer)
* Rolling log writer (Logging with rotation)
* SMTP writer
* Others... (See [Wiki](https://github.com/cihub/seelog/wiki))
* Log message wrappers (JSON, XML, etc.)
* Global variables and functions for easy usage in standalone apps
* Functions for flexible usage in libraries
Quick-start
-----------
```go
package main
import log "github.com/cihub/seelog"
func main() {
defer log.Flush()
log.Info("Hello from Seelog!")
}
```
Installation
------------
If you don't have the Go development environment installed, visit the
[Getting Started](http://golang.org/doc/install.html) document and follow the instructions. Once you're ready, execute the following command:
```
go get -u github.com/cihub/seelog
```
*IMPORTANT*: If you are not using the latest release version of Go, check out this [wiki page](https://github.com/cihub/seelog/wiki/Notes-on-'go-get')
Documentation
---------------
Seelog has github wiki pages, which contain detailed how-tos references: https://github.com/cihub/seelog/wiki
Examples
---------------
Seelog examples can be found here: [seelog-examples](https://github.com/cihub/seelog-examples)
Issues
---------------
Feel free to push issues that could make Seelog better: https://github.com/cihub/seelog/issues
Changelog
---------------
* **v2.5** : Interaction with other systems. Part 2: custom receivers
* Finished custom receivers feature. Check [wiki](https://github.com/cihub/seelog/wiki/custom-receivers)
* Added 'LoggerFromCustomReceiver'
* Added 'LoggerFromWriterWithMinLevelAndFormat'
* Added 'LoggerFromCustomReceiver'
* Added 'LoggerFromParamConfigAs...'
* **v2.4** : Interaction with other systems. Part 1: wrapping seelog
* Added configurable caller stack skip logic
* Added 'SetAdditionalStackDepth' to 'LoggerInterface'
* **v2.3** : Rethinking 'rolling' receiver
* Reimplemented 'rolling' receiver
* Added 'Max rolls' feature for 'rolling' receiver with type='date'
* Fixed 'rolling' receiver issue: renaming on Windows
* **v2.2** : go1.0 compatibility point [go1.0 tag]
* Fixed internal bugs
* Added 'ANSI n [;k]' format identifier: %EscN
* Made current release go1 compatible
* **v2.1** : Some new features
* Rolling receiver archiving option.
* Added format identifier: %Line
* Smtp: added paths to PEM files directories
* Added format identifier: %FuncShort
* Warn, Error and Critical methods now return an error
* **v2.0** : Second major release. BREAKING CHANGES.
* Support of binaries with stripped symbols
* Added log strategy: adaptive
* Critical message now forces Flush()
* Added predefined formats: xml-debug, xml-debug-short, xml, xml-short, json-debug, json-debug-short, json, json-short, debug, debug-short, fast
* Added receiver: conn (network connection writer)
* BREAKING CHANGE: added Tracef, Debugf, Infof, etc. to satisfy the print/printf principle
* Bug fixes
* **v1.0** : Initial release. Features:
* Xml config
* Changing configurations on the fly without app restart
* Contraints and exceptions
* Formatting
* Log strategies: sync, async loop, async timer
* Receivers: buffered, console, file, rolling, smtp

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"bufio"
"bytes"
"fmt"
"io"
"io/ioutil"
"strconv"
"testing"
)
func countSequencedRowsInFile(filePath string) (int64, error) {
bts, err := ioutil.ReadFile(filePath)
if err != nil {
return 0, err
}
bufReader := bufio.NewReader(bytes.NewBuffer(bts))
var gotCounter int64
for {
line, _, bufErr := bufReader.ReadLine()
if bufErr != nil && bufErr != io.EOF {
return 0, bufErr
}
lineString := string(line)
if lineString == "" {
break
}
intVal, atoiErr := strconv.ParseInt(lineString, 10, 64)
if atoiErr != nil {
return 0, atoiErr
}
if intVal != gotCounter {
return 0, fmt.Errorf("wrong order: %d Expected: %d\n", intVal, gotCounter)
}
gotCounter++
}
return gotCounter, nil
}
func Test_Adaptive(t *testing.T) {
fileName := "beh_test_adaptive.log"
count := 100
Current.Close()
if e := tryRemoveFile(fileName); e != nil {
t.Error(e)
return
}
defer func() {
if e := tryRemoveFile(fileName); e != nil {
t.Error(e)
}
}()
testConfig := `
<seelog type="adaptive" mininterval="1000" maxinterval="1000000" critmsgcount="100">
<outputs formatid="msg">
<file path="` + fileName + `"/>
</outputs>
<formats>
<format id="msg" format="%Msg%n"/>
</formats>
</seelog>`
logger, _ := LoggerFromConfigAsString(testConfig)
err := ReplaceLogger(logger)
if err != nil {
t.Error(err)
return
}
for i := 0; i < count; i++ {
Trace(strconv.Itoa(i))
}
Flush()
gotCount, err := countSequencedRowsInFile(fileName)
if err != nil {
t.Error(err)
return
}
if int64(count) != gotCount {
t.Errorf("wrong count of log messages. Expected: %v, got: %v.", count, gotCount)
return
}
Current.Close()
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
"fmt"
"math"
"time"
)
var (
adaptiveLoggerMaxInterval = time.Minute
adaptiveLoggerMaxCriticalMsgCount = uint32(1000)
)
// asyncAdaptiveLogger represents asynchronous adaptive logger which acts like
// an async timer logger, but its interval depends on the current message count
// in the queue.
//
// Interval = I, minInterval = m, maxInterval = M, criticalMsgCount = C, msgCount = c:
// I = m + (C - Min(c, C)) / C * (M - m)
type asyncAdaptiveLogger struct {
asyncLogger
minInterval time.Duration
criticalMsgCount uint32
maxInterval time.Duration
}
// newAsyncLoopLogger creates a new asynchronous adaptive logger
func newAsyncAdaptiveLogger(
config *logConfig,
minInterval time.Duration,
maxInterval time.Duration,
criticalMsgCount uint32) (*asyncAdaptiveLogger, error) {
if minInterval <= 0 {
return nil, errors.New("async adaptive logger min interval should be > 0")
}
if maxInterval > adaptiveLoggerMaxInterval {
return nil, fmt.Errorf("async adaptive logger max interval should be <= %s",
adaptiveLoggerMaxInterval)
}
if criticalMsgCount <= 0 {
return nil, errors.New("async adaptive logger critical msg count should be > 0")
}
if criticalMsgCount > adaptiveLoggerMaxCriticalMsgCount {
return nil, fmt.Errorf("async adaptive logger critical msg count should be <= %s",
adaptiveLoggerMaxInterval)
}
asnAdaptiveLogger := new(asyncAdaptiveLogger)
asnAdaptiveLogger.asyncLogger = *newAsyncLogger(config)
asnAdaptiveLogger.minInterval = minInterval
asnAdaptiveLogger.maxInterval = maxInterval
asnAdaptiveLogger.criticalMsgCount = criticalMsgCount
go asnAdaptiveLogger.processQueue()
return asnAdaptiveLogger, nil
}
func (asnAdaptiveLogger *asyncAdaptiveLogger) processItem() (closed bool, itemCount int) {
asnAdaptiveLogger.queueHasElements.L.Lock()
defer asnAdaptiveLogger.queueHasElements.L.Unlock()
for asnAdaptiveLogger.msgQueue.Len() == 0 && !asnAdaptiveLogger.Closed() {
asnAdaptiveLogger.queueHasElements.Wait()
}
if asnAdaptiveLogger.Closed() {
return true, asnAdaptiveLogger.msgQueue.Len()
}
asnAdaptiveLogger.processQueueElement()
return false, asnAdaptiveLogger.msgQueue.Len() - 1
}
// I = m + (C - Min(c, C)) / C * (M - m) =>
// I = m + cDiff * mDiff,
// cDiff = (C - Min(c, C)) / C)
// mDiff = (M - m)
func (asnAdaptiveLogger *asyncAdaptiveLogger) calcAdaptiveInterval(msgCount int) time.Duration {
critCountF := float64(asnAdaptiveLogger.criticalMsgCount)
cDiff := (critCountF - math.Min(float64(msgCount), critCountF)) / critCountF
mDiff := float64(asnAdaptiveLogger.maxInterval - asnAdaptiveLogger.minInterval)
return asnAdaptiveLogger.minInterval + time.Duration(cDiff*mDiff)
}
func (asnAdaptiveLogger *asyncAdaptiveLogger) processQueue() {
for !asnAdaptiveLogger.Closed() {
closed, itemCount := asnAdaptiveLogger.processItem()
if closed {
break
}
interval := asnAdaptiveLogger.calcAdaptiveInterval(itemCount)
<-time.After(interval)
}
}

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vendor/github.com/cihub/seelog/behavior_asynclogger.go generated vendored Normal file
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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"container/list"
"fmt"
"sync"
)
// MaxQueueSize is the critical number of messages in the queue that result in an immediate flush.
const (
MaxQueueSize = 10000
)
type msgQueueItem struct {
level LogLevel
context LogContextInterface
message fmt.Stringer
}
// asyncLogger represents common data for all asynchronous loggers
type asyncLogger struct {
commonLogger
msgQueue *list.List
queueHasElements *sync.Cond
}
// newAsyncLogger creates a new asynchronous logger
func newAsyncLogger(config *logConfig) *asyncLogger {
asnLogger := new(asyncLogger)
asnLogger.msgQueue = list.New()
asnLogger.queueHasElements = sync.NewCond(new(sync.Mutex))
asnLogger.commonLogger = *newCommonLogger(config, asnLogger)
return asnLogger
}
func (asnLogger *asyncLogger) innerLog(
level LogLevel,
context LogContextInterface,
message fmt.Stringer) {
asnLogger.addMsgToQueue(level, context, message)
}
func (asnLogger *asyncLogger) Close() {
asnLogger.m.Lock()
defer asnLogger.m.Unlock()
if !asnLogger.Closed() {
asnLogger.flushQueue(true)
asnLogger.config.RootDispatcher.Flush()
if err := asnLogger.config.RootDispatcher.Close(); err != nil {
reportInternalError(err)
}
asnLogger.closedM.Lock()
asnLogger.closed = true
asnLogger.closedM.Unlock()
asnLogger.queueHasElements.Broadcast()
}
}
func (asnLogger *asyncLogger) Flush() {
asnLogger.m.Lock()
defer asnLogger.m.Unlock()
if !asnLogger.Closed() {
asnLogger.flushQueue(true)
asnLogger.config.RootDispatcher.Flush()
}
}
func (asnLogger *asyncLogger) flushQueue(lockNeeded bool) {
if lockNeeded {
asnLogger.queueHasElements.L.Lock()
defer asnLogger.queueHasElements.L.Unlock()
}
for asnLogger.msgQueue.Len() > 0 {
asnLogger.processQueueElement()
}
}
func (asnLogger *asyncLogger) processQueueElement() {
if asnLogger.msgQueue.Len() > 0 {
backElement := asnLogger.msgQueue.Front()
msg, _ := backElement.Value.(msgQueueItem)
asnLogger.processLogMsg(msg.level, msg.message, msg.context)
asnLogger.msgQueue.Remove(backElement)
}
}
func (asnLogger *asyncLogger) addMsgToQueue(
level LogLevel,
context LogContextInterface,
message fmt.Stringer) {
if !asnLogger.Closed() {
asnLogger.queueHasElements.L.Lock()
defer asnLogger.queueHasElements.L.Unlock()
if asnLogger.msgQueue.Len() >= MaxQueueSize {
fmt.Printf("Seelog queue overflow: more than %v messages in the queue. Flushing.\n", MaxQueueSize)
asnLogger.flushQueue(false)
}
queueItem := msgQueueItem{level, context, message}
asnLogger.msgQueue.PushBack(queueItem)
asnLogger.queueHasElements.Broadcast()
} else {
err := fmt.Errorf("queue closed! Cannot process element: %d %#v", level, message)
reportInternalError(err)
}
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"strconv"
"testing"
)
func Test_Asyncloop(t *testing.T) {
fileName := "beh_test_asyncloop.log"
count := 100
Current.Close()
if e := tryRemoveFile(fileName); e != nil {
t.Error(e)
return
}
defer func() {
if e := tryRemoveFile(fileName); e != nil {
t.Error(e)
}
}()
testConfig := `
<seelog type="asyncloop">
<outputs formatid="msg">
<file path="` + fileName + `"/>
</outputs>
<formats>
<format id="msg" format="%Msg%n"/>
</formats>
</seelog>`
logger, _ := LoggerFromConfigAsString(testConfig)
err := ReplaceLogger(logger)
if err != nil {
t.Error(err)
return
}
for i := 0; i < count; i++ {
Trace(strconv.Itoa(i))
}
Flush()
gotCount, err := countSequencedRowsInFile(fileName)
if err != nil {
t.Error(err)
return
}
if int64(count) != gotCount {
t.Errorf("wrong count of log messages. Expected: %v, got: %v.", count, gotCount)
return
}
Current.Close()
}
func Test_AsyncloopOff(t *testing.T) {
fileName := "beh_test_asyncloopoff.log"
count := 100
Current.Close()
if e := tryRemoveFile(fileName); e != nil {
t.Error(e)
return
}
testConfig := `
<seelog type="asyncloop" levels="off">
<outputs formatid="msg">
<file path="` + fileName + `"/>
</outputs>
<formats>
<format id="msg" format="%Msg%n"/>
</formats>
</seelog>`
logger, _ := LoggerFromConfigAsString(testConfig)
err := ReplaceLogger(logger)
if err != nil {
t.Error(err)
return
}
for i := 0; i < count; i++ {
Trace(strconv.Itoa(i))
}
Flush()
ex, err := fileExists(fileName)
if err != nil {
t.Error(err)
}
if ex {
t.Errorf("logger at level OFF is not expected to create log file at all.")
defer func() {
if e := tryRemoveFile(fileName); e != nil {
t.Error(e)
}
}()
}
Current.Close()
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
// asyncLoopLogger represents asynchronous logger which processes the log queue in
// a 'for' loop
type asyncLoopLogger struct {
asyncLogger
}
// newAsyncLoopLogger creates a new asynchronous loop logger
func newAsyncLoopLogger(config *logConfig) *asyncLoopLogger {
asnLoopLogger := new(asyncLoopLogger)
asnLoopLogger.asyncLogger = *newAsyncLogger(config)
go asnLoopLogger.processQueue()
return asnLoopLogger
}
func (asnLoopLogger *asyncLoopLogger) processItem() (closed bool) {
asnLoopLogger.queueHasElements.L.Lock()
defer asnLoopLogger.queueHasElements.L.Unlock()
for asnLoopLogger.msgQueue.Len() == 0 && !asnLoopLogger.Closed() {
asnLoopLogger.queueHasElements.Wait()
}
if asnLoopLogger.Closed() {
return true
}
asnLoopLogger.processQueueElement()
return false
}
func (asnLoopLogger *asyncLoopLogger) processQueue() {
for !asnLoopLogger.Closed() {
closed := asnLoopLogger.processItem()
if closed {
break
}
}
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"strconv"
"testing"
)
func Test_Asynctimer(t *testing.T) {
fileName := "beh_test_asynctimer.log"
count := 100
Current.Close()
if e := tryRemoveFile(fileName); e != nil {
t.Error(e)
return
}
defer func() {
if e := tryRemoveFile(fileName); e != nil {
t.Error(e)
}
}()
testConfig := `
<seelog type="asynctimer" asyncinterval="100">
<outputs formatid="msg">
<file path="` + fileName + `"/>
</outputs>
<formats>
<format id="msg" format="%Msg%n"/>
</formats>
</seelog>`
logger, _ := LoggerFromConfigAsString(testConfig)
err := ReplaceLogger(logger)
if err != nil {
t.Error(err)
return
}
for i := 0; i < count; i++ {
Trace(strconv.Itoa(i))
}
Flush()
gotCount, err := countSequencedRowsInFile(fileName)
if err != nil {
t.Error(err)
return
}
if int64(count) != gotCount {
t.Errorf("wrong count of log messages. Expected: %v, got: %v.", count, gotCount)
return
}
Current.Close()
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
"time"
)
// asyncTimerLogger represents asynchronous logger which processes the log queue each
// 'duration' nanoseconds
type asyncTimerLogger struct {
asyncLogger
interval time.Duration
}
// newAsyncLoopLogger creates a new asynchronous loop logger
func newAsyncTimerLogger(config *logConfig, interval time.Duration) (*asyncTimerLogger, error) {
if interval <= 0 {
return nil, errors.New("async logger interval should be > 0")
}
asnTimerLogger := new(asyncTimerLogger)
asnTimerLogger.asyncLogger = *newAsyncLogger(config)
asnTimerLogger.interval = interval
go asnTimerLogger.processQueue()
return asnTimerLogger, nil
}
func (asnTimerLogger *asyncTimerLogger) processItem() (closed bool) {
asnTimerLogger.queueHasElements.L.Lock()
defer asnTimerLogger.queueHasElements.L.Unlock()
for asnTimerLogger.msgQueue.Len() == 0 && !asnTimerLogger.Closed() {
asnTimerLogger.queueHasElements.Wait()
}
if asnTimerLogger.Closed() {
return true
}
asnTimerLogger.processQueueElement()
return false
}
func (asnTimerLogger *asyncTimerLogger) processQueue() {
for !asnTimerLogger.Closed() {
closed := asnTimerLogger.processItem()
if closed {
break
}
<-time.After(asnTimerLogger.interval)
}
}

75
vendor/github.com/cihub/seelog/behavior_synclogger.go generated vendored Normal file
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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"fmt"
)
// syncLogger performs logging in the same goroutine where 'Trace/Debug/...'
// func was called
type syncLogger struct {
commonLogger
}
// newSyncLogger creates a new synchronous logger
func newSyncLogger(config *logConfig) *syncLogger {
syncLogger := new(syncLogger)
syncLogger.commonLogger = *newCommonLogger(config, syncLogger)
return syncLogger
}
func (syncLogger *syncLogger) innerLog(
level LogLevel,
context LogContextInterface,
message fmt.Stringer) {
syncLogger.processLogMsg(level, message, context)
}
func (syncLogger *syncLogger) Close() {
syncLogger.m.Lock()
defer syncLogger.m.Unlock()
if !syncLogger.Closed() {
if err := syncLogger.config.RootDispatcher.Close(); err != nil {
reportInternalError(err)
}
syncLogger.closedM.Lock()
syncLogger.closed = true
syncLogger.closedM.Unlock()
}
}
func (syncLogger *syncLogger) Flush() {
syncLogger.m.Lock()
defer syncLogger.m.Unlock()
if !syncLogger.Closed() {
syncLogger.config.RootDispatcher.Flush()
}
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"strconv"
"testing"
)
func Test_Sync(t *testing.T) {
fileName := "beh_test_sync.log"
count := 100
Current.Close()
if e := tryRemoveFile(fileName); e != nil {
t.Error(e)
return
}
defer func() {
if e := tryRemoveFile(fileName); e != nil {
t.Error(e)
}
}()
testConfig := `
<seelog type="sync">
<outputs formatid="msg">
<file path="` + fileName + `"/>
</outputs>
<formats>
<format id="msg" format="%Msg%n"/>
</formats>
</seelog>`
logger, _ := LoggerFromConfigAsString(testConfig)
err := ReplaceLogger(logger)
if err != nil {
t.Error(err)
return
}
for i := 0; i < count; i++ {
Trace(strconv.Itoa(i))
}
gotCount, err := countSequencedRowsInFile(fileName)
if err != nil {
t.Error(err)
return
}
if int64(count) != gotCount {
t.Errorf("wrong count of log messages. Expected: %v, got: %v.", count, gotCount)
return
}
Current.Close()
}

188
vendor/github.com/cihub/seelog/cfg_config.go generated vendored Normal file
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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"bytes"
"encoding/xml"
"io"
"os"
)
// LoggerFromConfigAsFile creates logger with config from file. File should contain valid seelog xml.
func LoggerFromConfigAsFile(fileName string) (LoggerInterface, error) {
file, err := os.Open(fileName)
if err != nil {
return nil, err
}
defer file.Close()
conf, err := configFromReader(file)
if err != nil {
return nil, err
}
return createLoggerFromConfig(conf)
}
// LoggerFromConfigAsBytes creates a logger with config from bytes stream. Bytes should contain valid seelog xml.
func LoggerFromConfigAsBytes(data []byte) (LoggerInterface, error) {
conf, err := configFromReader(bytes.NewBuffer(data))
if err != nil {
return nil, err
}
return createLoggerFromConfig(conf)
}
// LoggerFromConfigAsString creates a logger with config from a string. String should contain valid seelog xml.
func LoggerFromConfigAsString(data string) (LoggerInterface, error) {
return LoggerFromConfigAsBytes([]byte(data))
}
// LoggerFromParamConfigAsFile does the same as LoggerFromConfigAsFile, but includes special parser options.
// See 'CfgParseParams' comments.
func LoggerFromParamConfigAsFile(fileName string, parserParams *CfgParseParams) (LoggerInterface, error) {
file, err := os.Open(fileName)
if err != nil {
return nil, err
}
defer file.Close()
conf, err := configFromReaderWithConfig(file, parserParams)
if err != nil {
return nil, err
}
return createLoggerFromConfig(conf)
}
// LoggerFromParamConfigAsBytes does the same as LoggerFromConfigAsBytes, but includes special parser options.
// See 'CfgParseParams' comments.
func LoggerFromParamConfigAsBytes(data []byte, parserParams *CfgParseParams) (LoggerInterface, error) {
conf, err := configFromReaderWithConfig(bytes.NewBuffer(data), parserParams)
if err != nil {
return nil, err
}
return createLoggerFromConfig(conf)
}
// LoggerFromParamConfigAsString does the same as LoggerFromConfigAsString, but includes special parser options.
// See 'CfgParseParams' comments.
func LoggerFromParamConfigAsString(data string, parserParams *CfgParseParams) (LoggerInterface, error) {
return LoggerFromParamConfigAsBytes([]byte(data), parserParams)
}
// LoggerFromWriterWithMinLevel is shortcut for LoggerFromWriterWithMinLevelAndFormat(output, minLevel, DefaultMsgFormat)
func LoggerFromWriterWithMinLevel(output io.Writer, minLevel LogLevel) (LoggerInterface, error) {
return LoggerFromWriterWithMinLevelAndFormat(output, minLevel, DefaultMsgFormat)
}
// LoggerFromWriterWithMinLevelAndFormat creates a proxy logger that uses io.Writer as the
// receiver with minimal level = minLevel and with specified format.
//
// All messages with level more or equal to minLevel will be written to output and
// formatted using the default seelog format.
//
// Can be called for usage with non-Seelog systems
func LoggerFromWriterWithMinLevelAndFormat(output io.Writer, minLevel LogLevel, format string) (LoggerInterface, error) {
constraints, err := newMinMaxConstraints(minLevel, CriticalLvl)
if err != nil {
return nil, err
}
formatter, err := newFormatter(format)
if err != nil {
return nil, err
}
dispatcher, err := newSplitDispatcher(formatter, []interface{}{output})
if err != nil {
return nil, err
}
conf, err := newConfig(constraints, make([]*logLevelException, 0), dispatcher, syncloggerTypeFromString, nil, nil)
if err != nil {
return nil, err
}
return createLoggerFromConfig(conf)
}
// LoggerFromXMLDecoder creates logger with config from a XML decoder starting from a specific node.
// It should contain valid seelog xml, except for root node name.
func LoggerFromXMLDecoder(xmlParser *xml.Decoder, rootNode xml.Token) (LoggerInterface, error) {
conf, err := configFromXMLDecoder(xmlParser, rootNode)
if err != nil {
return nil, err
}
return createLoggerFromConfig(conf)
}
// LoggerFromCustomReceiver creates a proxy logger that uses a CustomReceiver as the
// receiver.
//
// All messages will be sent to the specified custom receiver without additional
// formatting ('%Msg' format is used).
//
// Check CustomReceiver, RegisterReceiver for additional info.
//
// NOTE 1: CustomReceiver.AfterParse is only called when a receiver is instantiated
// by the config parser while parsing config. So, if you are not planning to use the
// same CustomReceiver for both proxying (via LoggerFromCustomReceiver call) and
// loading from config, just leave AfterParse implementation empty.
//
// NOTE 2: Unlike RegisterReceiver, LoggerFromCustomReceiver takes an already initialized
// instance that implements CustomReceiver. So, fill it with data and perform any initialization
// logic before calling this func and it won't be lost.
//
// So:
// * RegisterReceiver takes value just to get the reflect.Type from it and then
// instantiate it as many times as config is reloaded.
//
// * LoggerFromCustomReceiver takes value and uses it without modification and
// reinstantiation, directy passing it to the dispatcher tree.
func LoggerFromCustomReceiver(receiver CustomReceiver) (LoggerInterface, error) {
constraints, err := newMinMaxConstraints(TraceLvl, CriticalLvl)
if err != nil {
return nil, err
}
output, err := newCustomReceiverDispatcherByValue(msgonlyformatter, receiver, "user-proxy", CustomReceiverInitArgs{})
if err != nil {
return nil, err
}
dispatcher, err := newSplitDispatcher(msgonlyformatter, []interface{}{output})
if err != nil {
return nil, err
}
conf, err := newConfig(constraints, make([]*logLevelException, 0), dispatcher, syncloggerTypeFromString, nil, nil)
if err != nil {
return nil, err
}
return createLoggerFromConfig(conf)
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
)
var (
errNodeMustHaveChildren = errors.New("node must have children")
errNodeCannotHaveChildren = errors.New("node cannot have children")
)
type unexpectedChildElementError struct {
baseError
}
func newUnexpectedChildElementError(msg string) *unexpectedChildElementError {
custmsg := "Unexpected child element: " + msg
return &unexpectedChildElementError{baseError{message: custmsg}}
}
type missingArgumentError struct {
baseError
}
func newMissingArgumentError(nodeName, attrName string) *missingArgumentError {
custmsg := "Output '" + nodeName + "' has no '" + attrName + "' attribute"
return &missingArgumentError{baseError{message: custmsg}}
}
type unexpectedAttributeError struct {
baseError
}
func newUnexpectedAttributeError(nodeName, attr string) *unexpectedAttributeError {
custmsg := nodeName + " has unexpected attribute: " + attr
return &unexpectedAttributeError{baseError{message: custmsg}}
}

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vendor/github.com/cihub/seelog/cfg_logconfig.go generated vendored Normal file
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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
)
type loggerTypeFromString uint8
const (
syncloggerTypeFromString = iota
asyncLooploggerTypeFromString
asyncTimerloggerTypeFromString
adaptiveLoggerTypeFromString
defaultloggerTypeFromString = asyncLooploggerTypeFromString
)
const (
syncloggerTypeFromStringStr = "sync"
asyncloggerTypeFromStringStr = "asyncloop"
asyncTimerloggerTypeFromStringStr = "asynctimer"
adaptiveLoggerTypeFromStringStr = "adaptive"
)
// asyncTimerLoggerData represents specific data for async timer logger
type asyncTimerLoggerData struct {
AsyncInterval uint32
}
// adaptiveLoggerData represents specific data for adaptive timer logger
type adaptiveLoggerData struct {
MinInterval uint32
MaxInterval uint32
CriticalMsgCount uint32
}
var loggerTypeToStringRepresentations = map[loggerTypeFromString]string{
syncloggerTypeFromString: syncloggerTypeFromStringStr,
asyncLooploggerTypeFromString: asyncloggerTypeFromStringStr,
asyncTimerloggerTypeFromString: asyncTimerloggerTypeFromStringStr,
adaptiveLoggerTypeFromString: adaptiveLoggerTypeFromStringStr,
}
// getLoggerTypeFromString parses a string and returns a corresponding logger type, if successful.
func getLoggerTypeFromString(logTypeString string) (level loggerTypeFromString, found bool) {
for logType, logTypeStr := range loggerTypeToStringRepresentations {
if logTypeStr == logTypeString {
return logType, true
}
}
return 0, false
}
// logConfig stores logging configuration. Contains messages dispatcher, allowed log level rules
// (general constraints and exceptions), and messages formats (used by nodes of dispatcher tree)
type logConfig struct {
Constraints logLevelConstraints // General log level rules (>min and <max, or set of allowed levels)
Exceptions []*logLevelException // Exceptions to general rules for specific files or funcs
RootDispatcher dispatcherInterface // Root of output tree
LogType loggerTypeFromString
LoggerData interface{}
Params *CfgParseParams // Check cfg_parser: CfgParseParams
}
func newConfig(
constraints logLevelConstraints,
exceptions []*logLevelException,
rootDispatcher dispatcherInterface,
logType loggerTypeFromString,
logData interface{},
cfgParams *CfgParseParams) (*logConfig, error) {
if constraints == nil {
return nil, errors.New("constraints can not be nil")
}
if rootDispatcher == nil {
return nil, errors.New("rootDispatcher can not be nil")
}
config := new(logConfig)
config.Constraints = constraints
config.Exceptions = exceptions
config.RootDispatcher = rootDispatcher
config.LogType = logType
config.LoggerData = logData
config.Params = cfgParams
return config, nil
}
// IsAllowed returns true if logging with specified log level is allowed in current context.
// If any of exception patterns match current context, then exception constraints are applied. Otherwise,
// the general constraints are used.
func (config *logConfig) IsAllowed(level LogLevel, context LogContextInterface) bool {
allowed := config.Constraints.IsAllowed(level) // General rule
// Exceptions:
if context.IsValid() {
for _, exception := range config.Exceptions {
if exception.MatchesContext(context) {
return exception.IsAllowed(level)
}
}
}
return allowed
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"strings"
"testing"
)
func TestConfig(t *testing.T) {
testConfig :=
`
<seelog levels="trace, debug">
<exceptions>
<exception funcpattern="*getFirst*" filepattern="*" minlevel="off" />
<exception funcpattern="*getSecond*" filepattern="*" levels="info, error" />
</exceptions>
</seelog>
`
conf, err := configFromReader(strings.NewReader(testConfig))
if err != nil {
t.Errorf("parse error: %s\n", err.Error())
return
}
context, err := currentContext()
if err != nil {
t.Errorf("cannot get current context:" + err.Error())
return
}
firstContext, err := getFirstContext()
if err != nil {
t.Errorf("cannot get current context:" + err.Error())
return
}
secondContext, err := getSecondContext()
if err != nil {
t.Errorf("cannot get current context:" + err.Error())
return
}
if !conf.IsAllowed(TraceLvl, context) {
t.Errorf("error: deny trace in current context")
}
if conf.IsAllowed(TraceLvl, firstContext) {
t.Errorf("error: allow trace in first context")
}
if conf.IsAllowed(ErrorLvl, context) {
t.Errorf("error: allow error in current context")
}
if !conf.IsAllowed(ErrorLvl, secondContext) {
t.Errorf("error: deny error in second context")
}
// cache test
if !conf.IsAllowed(TraceLvl, context) {
t.Errorf("error: deny trace in current context")
}
if conf.IsAllowed(TraceLvl, firstContext) {
t.Errorf("error: allow trace in first context")
}
if conf.IsAllowed(ErrorLvl, context) {
t.Errorf("error: allow error in current context")
}
if !conf.IsAllowed(ErrorLvl, secondContext) {
t.Errorf("error: deny error in second context")
}
}
func getFirstContext() (LogContextInterface, error) {
return currentContext()
}
func getSecondContext() (LogContextInterface, error) {
return currentContext()
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
"fmt"
"strings"
)
// Represents constraints which form a general rule for log levels selection
type logLevelConstraints interface {
IsAllowed(level LogLevel) bool
}
// A minMaxConstraints represents constraints which use minimal and maximal allowed log levels.
type minMaxConstraints struct {
min LogLevel
max LogLevel
}
// newMinMaxConstraints creates a new minMaxConstraints struct with the specified min and max levels.
func newMinMaxConstraints(min LogLevel, max LogLevel) (*minMaxConstraints, error) {
if min > max {
return nil, fmt.Errorf("min level can't be greater than max. Got min: %d, max: %d", min, max)
}
if min < TraceLvl || min > CriticalLvl {
return nil, fmt.Errorf("min level can't be less than Trace or greater than Critical. Got min: %d", min)
}
if max < TraceLvl || max > CriticalLvl {
return nil, fmt.Errorf("max level can't be less than Trace or greater than Critical. Got max: %d", max)
}
return &minMaxConstraints{min, max}, nil
}
// IsAllowed returns true, if log level is in [min, max] range (inclusive).
func (minMaxConstr *minMaxConstraints) IsAllowed(level LogLevel) bool {
return level >= minMaxConstr.min && level <= minMaxConstr.max
}
func (minMaxConstr *minMaxConstraints) String() string {
return fmt.Sprintf("Min: %s. Max: %s", minMaxConstr.min, minMaxConstr.max)
}
//=======================================================
// A listConstraints represents constraints which use allowed log levels list.
type listConstraints struct {
allowedLevels map[LogLevel]bool
}
// newListConstraints creates a new listConstraints struct with the specified allowed levels.
func newListConstraints(allowList []LogLevel) (*listConstraints, error) {
if allowList == nil {
return nil, errors.New("list can't be nil")
}
allowLevels, err := createMapFromList(allowList)
if err != nil {
return nil, err
}
err = validateOffLevel(allowLevels)
if err != nil {
return nil, err
}
return &listConstraints{allowLevels}, nil
}
func (listConstr *listConstraints) String() string {
allowedList := "List: "
listLevel := make([]string, len(listConstr.allowedLevels))
var logLevel LogLevel
i := 0
for logLevel = TraceLvl; logLevel <= Off; logLevel++ {
if listConstr.allowedLevels[logLevel] {
listLevel[i] = logLevel.String()
i++
}
}
allowedList += strings.Join(listLevel, ",")
return allowedList
}
func createMapFromList(allowedList []LogLevel) (map[LogLevel]bool, error) {
allowedLevels := make(map[LogLevel]bool, 0)
for _, level := range allowedList {
if level < TraceLvl || level > Off {
return nil, fmt.Errorf("level can't be less than Trace or greater than Critical. Got level: %d", level)
}
allowedLevels[level] = true
}
return allowedLevels, nil
}
func validateOffLevel(allowedLevels map[LogLevel]bool) error {
if _, ok := allowedLevels[Off]; ok && len(allowedLevels) > 1 {
return errors.New("logLevel Off cant be mixed with other levels")
}
return nil
}
// IsAllowed returns true, if log level is in allowed log levels list.
// If the list contains the only item 'common.Off' then IsAllowed will always return false for any input values.
func (listConstr *listConstraints) IsAllowed(level LogLevel) bool {
for l := range listConstr.allowedLevels {
if l == level && level != Off {
return true
}
}
return false
}
// AllowedLevels returns allowed levels configuration as a map.
func (listConstr *listConstraints) AllowedLevels() map[LogLevel]bool {
return listConstr.allowedLevels
}
//=======================================================
type offConstraints struct {
}
func newOffConstraints() (*offConstraints, error) {
return &offConstraints{}, nil
}
func (offConstr *offConstraints) IsAllowed(level LogLevel) bool {
return false
}
func (offConstr *offConstraints) String() string {
return "Off constraint"
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"testing"
)
func TestInvalidminMaxConstraints(t *testing.T) {
constr, err := newMinMaxConstraints(CriticalLvl, WarnLvl)
if err == nil || constr != nil {
t.Errorf("expected an error and a nil value for minmax constraints: min = %d, max = %d. Got: %v, %v",
CriticalLvl, WarnLvl, err, constr)
return
}
}
func TestInvalidLogLevels(t *testing.T) {
var invalidMin uint8 = 123
var invalidMax uint8 = 124
minMaxConstr, errMinMax := newMinMaxConstraints(LogLevel(invalidMin), LogLevel(invalidMax))
if errMinMax == nil || minMaxConstr != nil {
t.Errorf("expected an error and a nil value for minmax constraints: min = %d, max = %d. Got: %v, %v",
invalidMin, invalidMax, errMinMax, minMaxConstr)
return
}
invalidList := []LogLevel{145}
listConstr, errList := newListConstraints(invalidList)
if errList == nil || listConstr != nil {
t.Errorf("expected an error and a nil value for constraints list: %v. Got: %v, %v",
invalidList, errList, listConstr)
return
}
}
func TestlistConstraintsWithDuplicates(t *testing.T) {
duplicateList := []LogLevel{TraceLvl, DebugLvl, InfoLvl,
WarnLvl, ErrorLvl, CriticalLvl, CriticalLvl, CriticalLvl}
listConstr, errList := newListConstraints(duplicateList)
if errList != nil || listConstr == nil {
t.Errorf("expected a valid constraints list struct for: %v, got error: %v, value: %v",
duplicateList, errList, listConstr)
return
}
listLevels := listConstr.AllowedLevels()
if listLevels == nil {
t.Fatalf("listConstr.AllowedLevels() == nil")
return
}
if len(listLevels) != 6 {
t.Errorf("expected: listConstr.AllowedLevels() length == 6. Got: %d", len(listLevels))
return
}
}
func TestlistConstraintsWithOffInList(t *testing.T) {
offList := []LogLevel{TraceLvl, DebugLvl, Off}
listConstr, errList := newListConstraints(offList)
if errList == nil || listConstr != nil {
t.Errorf("expected an error and a nil value for constraints list with 'Off': %v. Got: %v, %v",
offList, errList, listConstr)
return
}
}
type logLevelTestCase struct {
level LogLevel
allowed bool
}
var minMaxTests = []logLevelTestCase{
{TraceLvl, false},
{DebugLvl, false},
{InfoLvl, true},
{WarnLvl, true},
{ErrorLvl, false},
{CriticalLvl, false},
{123, false},
{6, false},
}
func TestValidminMaxConstraints(t *testing.T) {
constr, err := newMinMaxConstraints(InfoLvl, WarnLvl)
if err != nil || constr == nil {
t.Errorf("expected a valid constraints struct for minmax constraints: min = %d, max = %d. Got: %v, %v",
InfoLvl, WarnLvl, err, constr)
return
}
for _, minMaxTest := range minMaxTests {
allowed := constr.IsAllowed(minMaxTest.level)
if allowed != minMaxTest.allowed {
t.Errorf("expected IsAllowed() = %t for level = %d. Got: %t",
minMaxTest.allowed, minMaxTest.level, allowed)
return
}
}
}
var listTests = []logLevelTestCase{
{TraceLvl, true},
{DebugLvl, false},
{InfoLvl, true},
{WarnLvl, true},
{ErrorLvl, false},
{CriticalLvl, true},
{123, false},
{6, false},
}
func TestValidlistConstraints(t *testing.T) {
validList := []LogLevel{TraceLvl, InfoLvl, WarnLvl, CriticalLvl}
constr, err := newListConstraints(validList)
if err != nil || constr == nil {
t.Errorf("expected a valid constraints list struct for: %v. Got error: %v, value: %v",
validList, err, constr)
return
}
for _, minMaxTest := range listTests {
allowed := constr.IsAllowed(minMaxTest.level)
if allowed != minMaxTest.allowed {
t.Errorf("expected IsAllowed() = %t for level = %d. Got: %t",
minMaxTest.allowed, minMaxTest.level, allowed)
return
}
}
}
var offTests = []logLevelTestCase{
{TraceLvl, false},
{DebugLvl, false},
{InfoLvl, false},
{WarnLvl, false},
{ErrorLvl, false},
{CriticalLvl, false},
{123, false},
{6, false},
}
func TestValidListoffConstraints(t *testing.T) {
validList := []LogLevel{Off}
constr, err := newListConstraints(validList)
if err != nil || constr == nil {
t.Errorf("expected a valid constraints list struct for: %v. Got error: %v, value: %v",
validList, err, constr)
return
}
for _, minMaxTest := range offTests {
allowed := constr.IsAllowed(minMaxTest.level)
if allowed != minMaxTest.allowed {
t.Errorf("expected IsAllowed() = %t for level = %d. Got: %t",
minMaxTest.allowed, minMaxTest.level, allowed)
return
}
}
}

183
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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"fmt"
"os"
"path/filepath"
"runtime"
"strings"
"time"
)
var workingDir = "/"
func init() {
wd, err := os.Getwd()
if err == nil {
workingDir = filepath.ToSlash(wd) + "/"
}
}
// Represents runtime caller context.
type LogContextInterface interface {
// Caller's function name.
Func() string
// Caller's line number.
Line() int
// Caller's file short path (in slashed form).
ShortPath() string
// Caller's file full path (in slashed form).
FullPath() string
// Caller's file name (without path).
FileName() string
// True if the context is correct and may be used.
// If false, then an error in context evaluation occurred and
// all its other data may be corrupted.
IsValid() bool
// Time when log function was called.
CallTime() time.Time
}
// Returns context of the caller
func currentContext() (LogContextInterface, error) {
return specifyContext(1)
}
func extractCallerInfo(skip int) (fullPath string, shortPath string, funcName string, line int, err error) {
pc, fp, ln, ok := runtime.Caller(skip)
if !ok {
err = fmt.Errorf("error during runtime.Caller")
return
}
line = ln
fullPath = fp
if strings.HasPrefix(fp, workingDir) {
shortPath = fp[len(workingDir):]
} else {
shortPath = fp
}
funcName = runtime.FuncForPC(pc).Name()
if strings.HasPrefix(funcName, workingDir) {
funcName = funcName[len(workingDir):]
}
return
}
// Returns context of the function with placed "skip" stack frames of the caller
// If skip == 0 then behaves like currentContext
// Context is returned in any situation, even if error occurs. But, if an error
// occurs, the returned context is an error context, which contains no paths
// or names, but states that they can't be extracted.
func specifyContext(skip int) (LogContextInterface, error) {
callTime := time.Now()
if skip < 0 {
err := fmt.Errorf("can not skip negative stack frames")
return &errorContext{callTime, err}, err
}
fullPath, shortPath, funcName, line, err := extractCallerInfo(skip + 2)
if err != nil {
return &errorContext{callTime, err}, err
}
_, fileName := filepath.Split(fullPath)
return &logContext{funcName, line, shortPath, fullPath, fileName, callTime}, nil
}
// Represents a normal runtime caller context.
type logContext struct {
funcName string
line int
shortPath string
fullPath string
fileName string
callTime time.Time
}
func (context *logContext) IsValid() bool {
return true
}
func (context *logContext) Func() string {
return context.funcName
}
func (context *logContext) Line() int {
return context.line
}
func (context *logContext) ShortPath() string {
return context.shortPath
}
func (context *logContext) FullPath() string {
return context.fullPath
}
func (context *logContext) FileName() string {
return context.fileName
}
func (context *logContext) CallTime() time.Time {
return context.callTime
}
// Represents an error context
type errorContext struct {
errorTime time.Time
err error
}
func (errContext *errorContext) getErrorText(prefix string) string {
return fmt.Sprintf("%s() error: %s", prefix, errContext.err)
}
func (errContext *errorContext) IsValid() bool {
return false
}
func (errContext *errorContext) Line() int {
return -1
}
func (errContext *errorContext) Func() string {
return errContext.getErrorText("Func")
}
func (errContext *errorContext) ShortPath() string {
return errContext.getErrorText("ShortPath")
}
func (errContext *errorContext) FullPath() string {
return errContext.getErrorText("FullPath")
}
func (errContext *errorContext) FileName() string {
return errContext.getErrorText("FileName")
}
func (errContext *errorContext) CallTime() time.Time {
return errContext.errorTime
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"os"
"path/filepath"
"strings"
"testing"
)
const (
testShortPath = "common_context_test.go"
)
var (
commonPrefix string
testFullPath string
)
func init() {
// Here we remove the hardcoding of the package name which
// may break forks and some CI environments such as jenkins.
_, _, funcName, _, _ := extractCallerInfo(1)
commonPrefix = funcName[:strings.Index(funcName, "init·")]
wd, err := os.Getwd()
if err == nil {
// Transform the file path into a slashed form:
// This is the proper platform-neutral way.
testFullPath = filepath.ToSlash(filepath.Join(wd, testShortPath))
}
}
func TestContext(t *testing.T) {
context, err := currentContext()
if err != nil {
t.Fatalf("unexpected error: %s", err)
}
if context == nil {
t.Fatalf("unexpected error: context is nil")
}
if fn, funcName := context.Func(), commonPrefix+"TestContext"; fn != funcName {
// Account for a case when the func full path is longer than commonPrefix but includes it.
if !strings.HasSuffix(fn, funcName) {
t.Errorf("expected context.Func == %s ; got %s", funcName, context.Func())
}
}
if context.ShortPath() != testShortPath {
t.Errorf("expected context.ShortPath == %s ; got %s", testShortPath, context.ShortPath())
}
if len(testFullPath) == 0 {
t.Fatal("working directory seems invalid")
}
if context.FullPath() != testFullPath {
t.Errorf("expected context.FullPath == %s ; got %s", testFullPath, context.FullPath())
}
}
func innerContext() (context LogContextInterface, err error) {
return currentContext()
}
func TestInnerContext(t *testing.T) {
context, err := innerContext()
if err != nil {
t.Fatalf("unexpected error: %s", err)
}
if context == nil {
t.Fatalf("unexpected error: context is nil")
}
if fn, funcName := context.Func(), commonPrefix+"innerContext"; fn != funcName {
// Account for a case when the func full path is longer than commonPrefix but includes it.
if !strings.HasSuffix(fn, funcName) {
t.Errorf("expected context.Func == %s ; got %s", funcName, context.Func())
}
}
if context.ShortPath() != testShortPath {
t.Errorf("expected context.ShortPath == %s ; got %s", testShortPath, context.ShortPath())
}
if len(testFullPath) == 0 {
t.Fatal("working directory seems invalid")
}
if context.FullPath() != testFullPath {
t.Errorf("expected context.FullPath == %s ; got %s", testFullPath, context.FullPath())
}
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
"fmt"
"regexp"
"strings"
)
// Used in rules creation to validate input file and func filters
var (
fileFormatValidator = regexp.MustCompile(`[a-zA-Z0-9\\/ _\*\.]*`)
funcFormatValidator = regexp.MustCompile(`[a-zA-Z0-9_\*\.]*`)
)
// logLevelException represents an exceptional case used when you need some specific files or funcs to
// override general constraints and to use their own.
type logLevelException struct {
funcPatternParts []string
filePatternParts []string
funcPattern string
filePattern string
constraints logLevelConstraints
}
// newLogLevelException creates a new exception.
func newLogLevelException(funcPattern string, filePattern string, constraints logLevelConstraints) (*logLevelException, error) {
if constraints == nil {
return nil, errors.New("constraints can not be nil")
}
exception := new(logLevelException)
err := exception.initFuncPatternParts(funcPattern)
if err != nil {
return nil, err
}
exception.funcPattern = strings.Join(exception.funcPatternParts, "")
err = exception.initFilePatternParts(filePattern)
if err != nil {
return nil, err
}
exception.filePattern = strings.Join(exception.filePatternParts, "")
exception.constraints = constraints
return exception, nil
}
// MatchesContext returns true if context matches the patterns of this logLevelException
func (logLevelEx *logLevelException) MatchesContext(context LogContextInterface) bool {
return logLevelEx.match(context.Func(), context.FullPath())
}
// IsAllowed returns true if log level is allowed according to the constraints of this logLevelException
func (logLevelEx *logLevelException) IsAllowed(level LogLevel) bool {
return logLevelEx.constraints.IsAllowed(level)
}
// FuncPattern returns the function pattern of a exception
func (logLevelEx *logLevelException) FuncPattern() string {
return logLevelEx.funcPattern
}
// FuncPattern returns the file pattern of a exception
func (logLevelEx *logLevelException) FilePattern() string {
return logLevelEx.filePattern
}
// initFuncPatternParts checks whether the func filter has a correct format and splits funcPattern on parts
func (logLevelEx *logLevelException) initFuncPatternParts(funcPattern string) (err error) {
if funcFormatValidator.FindString(funcPattern) != funcPattern {
return errors.New("func path \"" + funcPattern + "\" contains incorrect symbols. Only a-z A-Z 0-9 _ * . allowed)")
}
logLevelEx.funcPatternParts = splitPattern(funcPattern)
return nil
}
// Checks whether the file filter has a correct format and splits file patterns using splitPattern.
func (logLevelEx *logLevelException) initFilePatternParts(filePattern string) (err error) {
if fileFormatValidator.FindString(filePattern) != filePattern {
return errors.New("file path \"" + filePattern + "\" contains incorrect symbols. Only a-z A-Z 0-9 \\ / _ * . allowed)")
}
logLevelEx.filePatternParts = splitPattern(filePattern)
return err
}
func (logLevelEx *logLevelException) match(funcPath string, filePath string) bool {
if !stringMatchesPattern(logLevelEx.funcPatternParts, funcPath) {
return false
}
return stringMatchesPattern(logLevelEx.filePatternParts, filePath)
}
func (logLevelEx *logLevelException) String() string {
str := fmt.Sprintf("Func: %s File: %s ", logLevelEx.funcPattern, logLevelEx.filePattern)
if logLevelEx.constraints != nil {
str += fmt.Sprintf("Constr: %s", logLevelEx.constraints)
} else {
str += "nil"
}
return str
}
// splitPattern splits pattern into strings and asterisks. Example: "ab*cde**f" -> ["ab", "*", "cde", "*", "f"]
func splitPattern(pattern string) []string {
var patternParts []string
var lastChar rune
for _, char := range pattern {
if char == '*' {
if lastChar != '*' {
patternParts = append(patternParts, "*")
}
} else {
if len(patternParts) != 0 && lastChar != '*' {
patternParts[len(patternParts)-1] += string(char)
} else {
patternParts = append(patternParts, string(char))
}
}
lastChar = char
}
return patternParts
}
// stringMatchesPattern check whether testString matches pattern with asterisks.
// Standard regexp functionality is not used here because of performance issues.
func stringMatchesPattern(patternparts []string, testString string) bool {
if len(patternparts) == 0 {
return len(testString) == 0
}
part := patternparts[0]
if part != "*" {
index := strings.Index(testString, part)
if index == 0 {
return stringMatchesPattern(patternparts[1:], testString[len(part):])
}
} else {
if len(patternparts) == 1 {
return true
}
newTestString := testString
part = patternparts[1]
for {
index := strings.Index(newTestString, part)
if index == -1 {
break
}
newTestString = newTestString[index+len(part):]
result := stringMatchesPattern(patternparts[2:], newTestString)
if result {
return true
}
}
}
return false
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"testing"
)
type exceptionTestCase struct {
funcPattern string
filePattern string
funcName string
fileName string
match bool
}
var exceptionTestCases = []exceptionTestCase{
{"*", "*", "func", "file", true},
{"func*", "*", "func", "file", true},
{"*func", "*", "func", "file", true},
{"*func", "*", "1func", "file", true},
{"func*", "*", "func1", "file", true},
{"fu*nc", "*", "func", "file", true},
{"fu*nc", "*", "fu1nc", "file", true},
{"fu*nc", "*", "func1nc", "file", true},
{"*fu*nc*", "*", "somefuntonc", "file", true},
{"fu*nc", "*", "f1nc", "file", false},
{"func*", "*", "fun", "file", false},
{"fu*nc", "*", "func1n", "file", false},
{"**f**u**n**c**", "*", "func1n", "file", true},
}
func TestMatchingCorrectness(t *testing.T) {
constraints, err := newListConstraints([]LogLevel{TraceLvl})
if err != nil {
t.Error(err)
return
}
for _, testCase := range exceptionTestCases {
rule, ruleError := newLogLevelException(testCase.funcPattern, testCase.filePattern, constraints)
if ruleError != nil {
t.Fatalf("Unexpected error on rule creation: [ %v, %v ]. %v",
testCase.funcPattern, testCase.filePattern, ruleError)
}
match := rule.match(testCase.funcName, testCase.fileName)
if match != testCase.match {
t.Errorf("incorrect matching for [ %v, %v ] [ %v, %v ] Expected: %t. Got: %t",
testCase.funcPattern, testCase.filePattern, testCase.funcName, testCase.fileName, testCase.match, match)
}
}
}
func TestAsterisksReducing(t *testing.T) {
constraints, err := newListConstraints([]LogLevel{TraceLvl})
if err != nil {
t.Error(err)
return
}
rule, err := newLogLevelException("***func**", "fi*****le", constraints)
if err != nil {
t.Error(err)
return
}
expectFunc := "*func*"
if rule.FuncPattern() != expectFunc {
t.Errorf("asterisks must be reduced. Expect:%v, Got:%v", expectFunc, rule.FuncPattern())
}
expectFile := "fi*le"
if rule.FilePattern() != expectFile {
t.Errorf("asterisks must be reduced. Expect:%v, Got:%v", expectFile, rule.FilePattern())
}
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
// flusherInterface represents all objects that have to do cleanup
// at certain moments of time (e.g. before app shutdown to avoid data loss)
type flusherInterface interface {
Flush()
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
// Log level type
type LogLevel uint8
// Log levels
const (
TraceLvl = iota
DebugLvl
InfoLvl
WarnLvl
ErrorLvl
CriticalLvl
Off
)
// Log level string representations (used in configuration files)
const (
TraceStr = "trace"
DebugStr = "debug"
InfoStr = "info"
WarnStr = "warn"
ErrorStr = "error"
CriticalStr = "critical"
OffStr = "off"
)
var levelToStringRepresentations = map[LogLevel]string{
TraceLvl: TraceStr,
DebugLvl: DebugStr,
InfoLvl: InfoStr,
WarnLvl: WarnStr,
ErrorLvl: ErrorStr,
CriticalLvl: CriticalStr,
Off: OffStr,
}
// LogLevelFromString parses a string and returns a corresponding log level, if sucessfull.
func LogLevelFromString(levelStr string) (level LogLevel, found bool) {
for lvl, lvlStr := range levelToStringRepresentations {
if lvlStr == levelStr {
return lvl, true
}
}
return 0, false
}
// LogLevelToString returns seelog string representation for a specified level. Returns "" for invalid log levels.
func (level LogLevel) String() string {
levelStr, ok := levelToStringRepresentations[level]
if ok {
return levelStr
}
return ""
}

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// Copyright (c) 2013 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
"fmt"
"reflect"
"sort"
)
var registeredReceivers = make(map[string]reflect.Type)
// RegisterReceiver records a custom receiver type, identified by a value
// of that type (second argument), under the specified name. Registered
// names can be used in the "name" attribute of <custom> config items.
//
// RegisterReceiver takes the type of the receiver argument, without taking
// the value into the account. So do NOT enter any data to the second argument
// and only call it like:
// RegisterReceiver("somename", &MyReceiverType{})
//
// After that, when a '<custom>' config tag with this name is used,
// a receiver of the specified type would be instantiated. Check
// CustomReceiver comments for interface details.
//
// NOTE 1: RegisterReceiver fails if you attempt to register different types
// with the same name.
//
// NOTE 2: RegisterReceiver registers those receivers that must be used in
// the configuration files (<custom> items). Basically it is just the way
// you tell seelog config parser what should it do when it meets a
// <custom> tag with a specific name and data attributes.
//
// But If you are only using seelog as a proxy to an already instantiated
// CustomReceiver (via LoggerFromCustomReceiver func), you should not call RegisterReceiver.
func RegisterReceiver(name string, receiver CustomReceiver) {
newType := reflect.TypeOf(reflect.ValueOf(receiver).Elem().Interface())
if t, ok := registeredReceivers[name]; ok && t != newType {
panic(fmt.Sprintf("duplicate types for %s: %s != %s", name, t, newType))
}
registeredReceivers[name] = newType
}
func customReceiverByName(name string) (creceiver CustomReceiver, err error) {
rt, ok := registeredReceivers[name]
if !ok {
return nil, fmt.Errorf("custom receiver name not registered: '%s'", name)
}
v, ok := reflect.New(rt).Interface().(CustomReceiver)
if !ok {
return nil, fmt.Errorf("cannot instantiate receiver with name='%s'", name)
}
return v, nil
}
// CustomReceiverInitArgs represent arguments passed to the CustomReceiver.Init
// func when custom receiver is being initialized.
type CustomReceiverInitArgs struct {
// XmlCustomAttrs represent '<custom>' xml config item attributes that
// start with "data-". Map keys will be the attribute names without the "data-".
// Map values will the those attribute values.
//
// E.g. if you have a '<custom name="somename" data-attr1="a1" data-attr2="a2"/>'
// you will get map with 2 key-value pairs: "attr1"->"a1", "attr2"->"a2"
//
// Note that in custom items you can only use allowed attributes, like "name" and
// your custom attributes, starting with "data-". Any other will lead to a
// parsing error.
XmlCustomAttrs map[string]string
}
// CustomReceiver is the interface that external custom seelog message receivers
// must implement in order to be able to process seelog messages. Those receivers
// are set in the xml config file using the <custom> tag. Check receivers reference
// wiki section on that.
//
// Use seelog.RegisterReceiver on the receiver type before using it.
type CustomReceiver interface {
// ReceiveMessage is called when the custom receiver gets seelog message from
// a parent dispatcher.
//
// Message, level and context args represent all data that was included in the seelog
// message at the time it was logged.
//
// The formatting is already applied to the message and depends on the config
// like with any other receiver.
//
// If you would like to inform seelog of an error that happened during the handling of
// the message, return a non-nil error. This way you'll end up seeing your error like
// any other internal seelog error.
ReceiveMessage(message string, level LogLevel, context LogContextInterface) error
// AfterParse is called immediately after your custom receiver is instantiated by
// the xml config parser. So, if you need to do any startup logic after config parsing,
// like opening file or allocating any resources after the receiver is instantiated, do it here.
//
// If this func returns a non-nil error, then the loading procedure will fail. E.g.
// if you are loading a seelog xml config, the parser would not finish the loading
// procedure and inform about an error like with any other config error.
//
// If your custom logger needs some configuration, you can use custom attributes in
// your config. Check CustomReceiverInitArgs.XmlCustomAttrs comments.
//
// IMPORTANT: This func is NOT called when the LoggerFromCustomReceiver func is used
// to create seelog proxy logger using the custom receiver. This func is only called when
// receiver is instantiated from a config.
AfterParse(initArgs CustomReceiverInitArgs) error
// Flush is called when the custom receiver gets a 'flush' directive from a
// parent receiver. If custom receiver implements some kind of buffering or
// queing, then the appropriate reaction on a flush message is synchronous
// flushing of all those queues/buffers. If custom receiver doesn't have
// such mechanisms, then flush implementation may be left empty.
Flush()
// Close is called when the custom receiver gets a 'close' directive from a
// parent receiver. This happens when a top-level seelog dispatcher is sending
// 'close' to all child nodes and it means that current seelog logger is being closed.
// If you need to do any cleanup after your custom receiver is done, you should do
// it here.
Close() error
}
type customReceiverDispatcher struct {
formatter *formatter
innerReceiver CustomReceiver
customReceiverName string
usedArgs CustomReceiverInitArgs
}
// newCustomReceiverDispatcher creates a customReceiverDispatcher which dispatches data to a specific receiver created
// using a <custom> tag in the config file.
func newCustomReceiverDispatcher(formatter *formatter, customReceiverName string, cArgs CustomReceiverInitArgs) (*customReceiverDispatcher, error) {
if formatter == nil {
return nil, errors.New("formatter cannot be nil")
}
if len(customReceiverName) == 0 {
return nil, errors.New("custom receiver name cannot be empty")
}
creceiver, err := customReceiverByName(customReceiverName)
if err != nil {
return nil, err
}
err = creceiver.AfterParse(cArgs)
if err != nil {
return nil, err
}
disp := &customReceiverDispatcher{formatter, creceiver, customReceiverName, cArgs}
return disp, nil
}
// newCustomReceiverDispatcherByValue is basically the same as newCustomReceiverDispatcher, but using
// a specific CustomReceiver value instead of instantiating a new one by type.
func newCustomReceiverDispatcherByValue(formatter *formatter, customReceiver CustomReceiver, name string, cArgs CustomReceiverInitArgs) (*customReceiverDispatcher, error) {
if formatter == nil {
return nil, errors.New("formatter cannot be nil")
}
if customReceiver == nil {
return nil, errors.New("customReceiver cannot be nil")
}
disp := &customReceiverDispatcher{formatter, customReceiver, name, cArgs}
return disp, nil
}
// CustomReceiver implementation. Check CustomReceiver comments.
func (disp *customReceiverDispatcher) Dispatch(
message string,
level LogLevel,
context LogContextInterface,
errorFunc func(err error)) {
defer func() {
if err := recover(); err != nil {
errorFunc(fmt.Errorf("panic in custom receiver '%s'.Dispatch: %s", reflect.TypeOf(disp.innerReceiver), err))
}
}()
err := disp.innerReceiver.ReceiveMessage(disp.formatter.Format(message, level, context), level, context)
if err != nil {
errorFunc(err)
}
}
// CustomReceiver implementation. Check CustomReceiver comments.
func (disp *customReceiverDispatcher) Flush() {
disp.innerReceiver.Flush()
}
// CustomReceiver implementation. Check CustomReceiver comments.
func (disp *customReceiverDispatcher) Close() error {
disp.innerReceiver.Flush()
err := disp.innerReceiver.Close()
if err != nil {
return err
}
return nil
}
func (disp *customReceiverDispatcher) String() string {
datas := ""
skeys := make([]string, 0, len(disp.usedArgs.XmlCustomAttrs))
for i := range disp.usedArgs.XmlCustomAttrs {
skeys = append(skeys, i)
}
sort.Strings(skeys)
for _, key := range skeys {
datas += fmt.Sprintf("<%s, %s> ", key, disp.usedArgs.XmlCustomAttrs[key])
}
str := fmt.Sprintf("Custom receiver %s [fmt='%s'],[data='%s'],[inner='%s']\n",
disp.customReceiverName, disp.formatter.String(), datas, disp.innerReceiver)
return str
}

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// Copyright (c) 2013 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"testing"
)
type testCustomDispatcherMessageReceiver struct {
customTestReceiver
}
func TestCustomDispatcher_Message(t *testing.T) {
recName := "TestCustomDispatcher_Message"
RegisterReceiver(recName, &testCustomDispatcherMessageReceiver{})
customDispatcher, err := newCustomReceiverDispatcher(onlyMessageFormatForTest, recName, CustomReceiverInitArgs{
XmlCustomAttrs: map[string]string{
"test": "testdata",
},
})
if err != nil {
t.Error(err)
return
}
context, err := currentContext()
if err != nil {
t.Error(err)
return
}
bytes := []byte("Hello")
customDispatcher.Dispatch(string(bytes), TraceLvl, context, func(err error) {})
cout := customDispatcher.innerReceiver.(*testCustomDispatcherMessageReceiver).customTestReceiver.co
if cout.initCalled != true {
t.Error("Init not called")
return
}
if cout.dataPassed != "testdata" {
t.Errorf("wrong data passed: '%s'", cout.dataPassed)
return
}
if cout.messageOutput != string(bytes) {
t.Errorf("wrong message output: '%s'", cout.messageOutput)
return
}
if cout.levelOutput != TraceLvl {
t.Errorf("wrong log level: '%s'", cout.levelOutput)
return
}
if cout.flushed {
t.Error("Flush was not expected")
return
}
if cout.closed {
t.Error("Closing was not expected")
return
}
}
type testCustomDispatcherFlushReceiver struct {
customTestReceiver
}
func TestCustomDispatcher_Flush(t *testing.T) {
recName := "TestCustomDispatcher_Flush"
RegisterReceiver(recName, &testCustomDispatcherFlushReceiver{})
customDispatcher, err := newCustomReceiverDispatcher(onlyMessageFormatForTest, recName, CustomReceiverInitArgs{
XmlCustomAttrs: map[string]string{
"test": "testdata",
},
})
if err != nil {
t.Error(err)
return
}
customDispatcher.Flush()
cout := customDispatcher.innerReceiver.(*testCustomDispatcherFlushReceiver).customTestReceiver.co
if cout.initCalled != true {
t.Error("Init not called")
return
}
if cout.dataPassed != "testdata" {
t.Errorf("wrong data passed: '%s'", cout.dataPassed)
return
}
if cout.messageOutput != "" {
t.Errorf("wrong message output: '%s'", cout.messageOutput)
return
}
if cout.levelOutput != TraceLvl {
t.Errorf("wrong log level: '%s'", cout.levelOutput)
return
}
if !cout.flushed {
t.Error("Flush was expected")
return
}
if cout.closed {
t.Error("Closing was not expected")
return
}
}
type testCustomDispatcherCloseReceiver struct {
customTestReceiver
}
func TestCustomDispatcher_Close(t *testing.T) {
recName := "TestCustomDispatcher_Close"
RegisterReceiver(recName, &testCustomDispatcherCloseReceiver{})
customDispatcher, err := newCustomReceiverDispatcher(onlyMessageFormatForTest, recName, CustomReceiverInitArgs{
XmlCustomAttrs: map[string]string{
"test": "testdata",
},
})
if err != nil {
t.Error(err)
return
}
customDispatcher.Close()
cout := customDispatcher.innerReceiver.(*testCustomDispatcherCloseReceiver).customTestReceiver.co
if cout.initCalled != true {
t.Error("Init not called")
return
}
if cout.dataPassed != "testdata" {
t.Errorf("wrong data passed: '%s'", cout.dataPassed)
return
}
if cout.messageOutput != "" {
t.Errorf("wrong message output: '%s'", cout.messageOutput)
return
}
if cout.levelOutput != TraceLvl {
t.Errorf("wrong log level: '%s'", cout.levelOutput)
return
}
if !cout.flushed {
t.Error("Flush was expected")
return
}
if !cout.closed {
t.Error("Closing was expected")
return
}
}

189
vendor/github.com/cihub/seelog/dispatch_dispatcher.go generated vendored Normal file
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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
"fmt"
"io"
)
// A dispatcherInterface is used to dispatch message to all underlying receivers.
// Dispatch logic depends on given context and log level. Any errors are reported using errorFunc.
// Also, as underlying receivers may have a state, dispatcher has a ShuttingDown method which performs
// an immediate cleanup of all data that is stored in the receivers
type dispatcherInterface interface {
flusherInterface
io.Closer
Dispatch(message string, level LogLevel, context LogContextInterface, errorFunc func(err error))
}
type dispatcher struct {
formatter *formatter
writers []*formattedWriter
dispatchers []dispatcherInterface
}
// Creates a dispatcher which dispatches data to a list of receivers.
// Each receiver should be either a Dispatcher or io.Writer, otherwise an error will be returned
func createDispatcher(formatter *formatter, receivers []interface{}) (*dispatcher, error) {
if formatter == nil {
return nil, errors.New("formatter cannot be nil")
}
if receivers == nil || len(receivers) == 0 {
return nil, errors.New("receivers cannot be nil or empty")
}
disp := &dispatcher{formatter, make([]*formattedWriter, 0), make([]dispatcherInterface, 0)}
for _, receiver := range receivers {
writer, ok := receiver.(*formattedWriter)
if ok {
disp.writers = append(disp.writers, writer)
continue
}
ioWriter, ok := receiver.(io.Writer)
if ok {
writer, err := newFormattedWriter(ioWriter, disp.formatter)
if err != nil {
return nil, err
}
disp.writers = append(disp.writers, writer)
continue
}
dispInterface, ok := receiver.(dispatcherInterface)
if ok {
disp.dispatchers = append(disp.dispatchers, dispInterface)
continue
}
return nil, errors.New("method can receive either io.Writer or dispatcherInterface")
}
return disp, nil
}
func (disp *dispatcher) Dispatch(
message string,
level LogLevel,
context LogContextInterface,
errorFunc func(err error)) {
for _, writer := range disp.writers {
err := writer.Write(message, level, context)
if err != nil {
errorFunc(err)
}
}
for _, dispInterface := range disp.dispatchers {
dispInterface.Dispatch(message, level, context, errorFunc)
}
}
// Flush goes through all underlying writers which implement flusherInterface interface
// and closes them. Recursively performs the same action for underlying dispatchers
func (disp *dispatcher) Flush() {
for _, disp := range disp.Dispatchers() {
disp.Flush()
}
for _, formatWriter := range disp.Writers() {
flusher, ok := formatWriter.Writer().(flusherInterface)
if ok {
flusher.Flush()
}
}
}
// Close goes through all underlying writers which implement io.Closer interface
// and closes them. Recursively performs the same action for underlying dispatchers
// Before closing, writers are flushed to prevent loss of any buffered data, so
// a call to Flush() func before Close() is not necessary
func (disp *dispatcher) Close() error {
for _, disp := range disp.Dispatchers() {
disp.Flush()
err := disp.Close()
if err != nil {
return err
}
}
for _, formatWriter := range disp.Writers() {
flusher, ok := formatWriter.Writer().(flusherInterface)
if ok {
flusher.Flush()
}
closer, ok := formatWriter.Writer().(io.Closer)
if ok {
err := closer.Close()
if err != nil {
return err
}
}
}
return nil
}
func (disp *dispatcher) Writers() []*formattedWriter {
return disp.writers
}
func (disp *dispatcher) Dispatchers() []dispatcherInterface {
return disp.dispatchers
}
func (disp *dispatcher) String() string {
str := "formatter: " + disp.formatter.String() + "\n"
str += " ->Dispatchers:"
if len(disp.dispatchers) == 0 {
str += "none\n"
} else {
str += "\n"
for _, disp := range disp.dispatchers {
str += fmt.Sprintf(" ->%s", disp)
}
}
str += " ->Writers:"
if len(disp.writers) == 0 {
str += "none\n"
} else {
str += "\n"
for _, writer := range disp.writers {
str += fmt.Sprintf(" ->%s\n", writer)
}
}
return str
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"fmt"
)
// A filterDispatcher writes the given message to underlying receivers only if message log level
// is in the allowed list.
type filterDispatcher struct {
*dispatcher
allowList map[LogLevel]bool
}
// newFilterDispatcher creates a new filterDispatcher using a list of allowed levels.
func newFilterDispatcher(formatter *formatter, receivers []interface{}, allowList ...LogLevel) (*filterDispatcher, error) {
disp, err := createDispatcher(formatter, receivers)
if err != nil {
return nil, err
}
allows := make(map[LogLevel]bool)
for _, allowLevel := range allowList {
allows[allowLevel] = true
}
return &filterDispatcher{disp, allows}, nil
}
func (filter *filterDispatcher) Dispatch(
message string,
level LogLevel,
context LogContextInterface,
errorFunc func(err error)) {
isAllowed, ok := filter.allowList[level]
if ok && isAllowed {
filter.dispatcher.Dispatch(message, level, context, errorFunc)
}
}
func (filter *filterDispatcher) String() string {
return fmt.Sprintf("filterDispatcher ->\n%s", filter.dispatcher)
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"testing"
)
func TestfilterDispatcher_Pass(t *testing.T) {
writer, _ := newBytesVerifier(t)
filter, err := newFilterDispatcher(onlyMessageFormatForTest, []interface{}{writer}, TraceLvl)
if err != nil {
t.Error(err)
return
}
context, err := currentContext()
if err != nil {
t.Error(err)
return
}
bytes := []byte("Hello")
writer.ExpectBytes(bytes)
filter.Dispatch(string(bytes), TraceLvl, context, func(err error) {})
writer.MustNotExpect()
}
func TestfilterDispatcher_Deny(t *testing.T) {
writer, _ := newBytesVerifier(t)
filter, err := newFilterDispatcher(defaultformatter, []interface{}{writer})
if err != nil {
t.Error(err)
return
}
context, err := currentContext()
if err != nil {
t.Error(err)
return
}
bytes := []byte("Hello")
filter.Dispatch(string(bytes), TraceLvl, context, func(err error) {})
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"fmt"
)
// A splitDispatcher just writes the given message to underlying receivers. (Splits the message stream.)
type splitDispatcher struct {
*dispatcher
}
func newSplitDispatcher(formatter *formatter, receivers []interface{}) (*splitDispatcher, error) {
disp, err := createDispatcher(formatter, receivers)
if err != nil {
return nil, err
}
return &splitDispatcher{disp}, nil
}
func (splitter *splitDispatcher) String() string {
return fmt.Sprintf("splitDispatcher ->\n%s", splitter.dispatcher.String())
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"fmt"
"testing"
)
var onlyMessageFormatForTest *formatter
func init() {
var err error
onlyMessageFormatForTest, err = newFormatter("%Msg")
if err != nil {
fmt.Println("Can not create only message format: " + err.Error())
}
}
func TestsplitDispatcher(t *testing.T) {
writer1, _ := newBytesVerifier(t)
writer2, _ := newBytesVerifier(t)
spliter, err := newSplitDispatcher(onlyMessageFormatForTest, []interface{}{writer1, writer2})
if err != nil {
t.Error(err)
return
}
context, err := currentContext()
if err != nil {
t.Error(err)
return
}
bytes := []byte("Hello")
writer1.ExpectBytes(bytes)
writer2.ExpectBytes(bytes)
spliter.Dispatch(string(bytes), TraceLvl, context, func(err error) {})
writer1.MustNotExpect()
writer2.MustNotExpect()
}

141
vendor/github.com/cihub/seelog/doc.go generated vendored Normal file
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// Copyright (c) 2014 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
/*
Package seelog implements logging functionality with flexible dispatching, filtering, and formatting.
Creation
To create a logger, use one of the following constructors:
func LoggerFromConfigAsBytes
func LoggerFromConfigAsFile
func LoggerFromConfigAsString
func LoggerFromWriterWithMinLevel
func LoggerFromWriterWithMinLevelAndFormat
func LoggerFromCustomReceiver (check https://github.com/cihub/seelog/wiki/Custom-receivers)
Example:
import log "github.com/cihub/seelog"
func main() {
logger, err := log.LoggerFromConfigAsFile("seelog.xml")
if err != nil {
panic(err)
}
defer logger.Flush()
... use logger ...
}
The "defer" line is important because if you are using asynchronous logger behavior, without this line you may end up losing some
messages when you close your application because they are processed in another non-blocking goroutine. To avoid that you
explicitly defer flushing all messages before closing.
Usage
Logger created using one of the LoggerFrom* funcs can be used directly by calling one of the main log funcs.
Example:
import log "github.com/cihub/seelog"
func main() {
logger, err := log.LoggerFromConfigAsFile("seelog.xml")
if err != nil {
panic(err)
}
defer logger.Flush()
logger.Trace("test")
logger.Debugf("var = %s", "abc")
}
Having loggers as variables is convenient if you are writing your own package with internal logging or if you have
several loggers with different options.
But for most standalone apps it is more convenient to use package level funcs and vars. There is a package level
var 'Current' made for it. You can replace it with another logger using 'ReplaceLogger' and then use package level funcs:
import log "github.com/cihub/seelog"
func main() {
logger, err := log.LoggerFromConfigAsFile("seelog.xml")
if err != nil {
panic(err)
}
log.ReplaceLogger(logger)
defer log.Flush()
log.Trace("test")
log.Debugf("var = %s", "abc")
}
Last lines
log.Trace("test")
log.Debugf("var = %s", "abc")
do the same as
log.Current.Trace("test")
log.Current.Debugf("var = %s", "abc")
In this example the 'Current' logger was replaced using a 'ReplaceLogger' call and became equal to 'logger' variable created from config.
This way you are able to use package level funcs instead of passing the logger variable.
Configuration
Main seelog point is to configure logger via config files and not the code. So you can only specify
formats and log rules by changing the configuration.
The configuration is read by LoggerFrom* funcs. These funcs read xml configuration from different sources and try
to create a logger using it.
All the configuration features are covered in detail in the official wiki: https://github.com/cihub/seelog/wiki.
There are many sections covering different aspects of seelog, but the most important for understanding configs are:
https://github.com/cihub/seelog/wiki/Constraints-and-exceptions
https://github.com/cihub/seelog/wiki/Dispatchers-and-receivers
https://github.com/cihub/seelog/wiki/Formatting
https://github.com/cihub/seelog/wiki/Logger-types
After you understand these concepts, check the 'Reference' section on the main wiki page to get the up-to-date
list of dispatchers, receivers, formats, and logger types.
Here is an example config with all these features:
<seelog type="adaptive" mininterval="2000000" maxinterval="100000000" critmsgcount="500" minlevel="debug">
<exceptions>
<exception filepattern="test*" minlevel="error"/>
</exceptions>
<outputs formatid="all">
<file path="all.log"/>
<filter levels="info">
<console formatid="fmtinfo"/>
</filter>
<filter levels="error,critical" formatid="fmterror">
<console/>
<file path="errors.log"/>
</filter>
</outputs>
<formats>
<format id="fmtinfo" format="[%Level] [%Time] %Msg%n"/>
<format id="fmterror" format="[%LEVEL] [%Time] [%FuncShort @ %File.%Line] %Msg%n"/>
<format id="all" format="[%Level] [%Time] [@ %File.%Line] %Msg%n"/>
<format id="criticalemail" format="Critical error on our server!\n %Time %Date %RelFile %Func %Msg \nSent by Seelog"/>
</formats>
</seelog>
This config represents a logger with adaptive timeout between log messages (check logger types reference) which
logs to console, all.log, and errors.log depending on the log level. Its output formats also depend on log level. This logger will only
use log level 'debug' and higher (minlevel is set) for all files with names that don't start with 'test'. For files starting with 'test'
this logger prohibits all levels below 'error'.
Examples
To learn seelog features faster you should check the examples package: https://github.com/cihub/seelog-examples
It contains many example configs and usecases.
*/
package seelog

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"bytes"
"errors"
"fmt"
"strconv"
"strings"
"unicode"
"unicode/utf8"
)
// FormatterSymbol is a special symbol used in config files to mark special format aliases.
const (
FormatterSymbol = '%'
)
const (
formatterParameterStart = '('
formatterParameterEnd = ')'
)
// Time and date formats used for %Date and %Time aliases.
const (
DateDefaultFormat = "2006-01-02"
TimeFormat = "15:04:05"
)
var DefaultMsgFormat = "%Ns [%Level] %Msg%n"
var (
defaultformatter *formatter
msgonlyformatter *formatter
)
func init() {
var err error
if defaultformatter, err = newFormatter(DefaultMsgFormat); err != nil {
reportInternalError(fmt.Errorf("error during creating defaultformatter: %s", err))
}
if msgonlyformatter, err = newFormatter("%Msg"); err != nil {
reportInternalError(fmt.Errorf("error during creating msgonlyformatter: %s", err))
}
}
// FormatterFunc represents one formatter object that starts with '%' sign in the 'format' attribute
// of the 'format' config item. These special symbols are replaced with context values or special
// strings when message is written to byte receiver.
//
// Check https://github.com/cihub/seelog/wiki/Formatting for details.
// Full list (with descriptions) of formatters: https://github.com/cihub/seelog/wiki/Format-reference
//
// FormatterFunc takes raw log message, level, log context and returns a string, number (of any type) or any object
// that can be evaluated as string.
type FormatterFunc func(message string, level LogLevel, context LogContextInterface) interface{}
// FormatterFuncCreator is a factory of FormatterFunc objects. It is used to generate parameterized
// formatters (such as %Date or %EscM) and custom user formatters.
type FormatterFuncCreator func(param string) FormatterFunc
var formatterFuncs = map[string]FormatterFunc{
"Level": formatterLevel,
"Lev": formatterLev,
"LEVEL": formatterLEVEL,
"LEV": formatterLEV,
"l": formatterl,
"Msg": formatterMsg,
"FullPath": formatterFullPath,
"File": formatterFile,
"RelFile": formatterRelFile,
"Func": FormatterFunction,
"FuncShort": FormatterFunctionShort,
"Line": formatterLine,
"Time": formatterTime,
"UTCTime": formatterUTCTime,
"Ns": formatterNs,
"UTCNs": formatterUTCNs,
"n": formattern,
"t": formattert,
}
var formatterFuncsParameterized = map[string]FormatterFuncCreator{
"Date": createDateTimeFormatterFunc,
"UTCDate": createUTCDateTimeFormatterFunc,
"EscM": createANSIEscapeFunc,
}
func errorAliasReserved(name string) error {
return fmt.Errorf("cannot use '%s' as custom formatter name. Name is reserved", name)
}
// RegisterCustomFormatter registers a new custom formatter factory with a given name. If returned error is nil,
// then this name (prepended by '%' symbol) can be used in 'format' attributes in configuration and
// it will be treated like the standard parameterized formatter identifiers.
//
// RegisterCustomFormatter needs to be called before creating a logger for it to take effect. The general recommendation
// is to call it once in 'init' func of your application or any initializer func.
//
// For usage examples, check https://github.com/cihub/seelog/wiki/Custom-formatters.
//
// Name must only consist of letters (unicode.IsLetter).
//
// Name must not be one of the already registered standard formatter names
// (https://github.com/cihub/seelog/wiki/Format-reference) and previously registered
// custom format names. To avoid any potential name conflicts (in future releases), it is recommended
// to start your custom formatter name with a namespace (e.g. 'MyCompanySomething') or a 'Custom' keyword.
func RegisterCustomFormatter(name string, creator FormatterFuncCreator) error {
if _, ok := formatterFuncs[name]; ok {
return errorAliasReserved(name)
}
if _, ok := formatterFuncsParameterized[name]; ok {
return errorAliasReserved(name)
}
formatterFuncsParameterized[name] = creator
return nil
}
// formatter is used to write messages in a specific format, inserting such additional data
// as log level, date/time, etc.
type formatter struct {
fmtStringOriginal string
fmtString string
formatterFuncs []FormatterFunc
}
// newFormatter creates a new formatter using a format string
func newFormatter(formatString string) (*formatter, error) {
fmtr := new(formatter)
fmtr.fmtStringOriginal = formatString
if err := buildFormatterFuncs(fmtr); err != nil {
return nil, err
}
return fmtr, nil
}
func buildFormatterFuncs(formatter *formatter) error {
var (
fsbuf = new(bytes.Buffer)
fsolm1 = len(formatter.fmtStringOriginal) - 1
)
for i := 0; i <= fsolm1; i++ {
if char := formatter.fmtStringOriginal[i]; char != FormatterSymbol {
fsbuf.WriteByte(char)
continue
}
// Check if the index is at the end of the string.
if i == fsolm1 {
return fmt.Errorf("format error: %c cannot be last symbol", FormatterSymbol)
}
// Check if the formatter symbol is doubled and skip it as nonmatching.
if formatter.fmtStringOriginal[i+1] == FormatterSymbol {
fsbuf.WriteRune(FormatterSymbol)
i++
continue
}
function, ni, err := formatter.extractFormatterFunc(i + 1)
if err != nil {
return err
}
// Append formatting string "%v".
fsbuf.Write([]byte{37, 118})
i = ni
formatter.formatterFuncs = append(formatter.formatterFuncs, function)
}
formatter.fmtString = fsbuf.String()
return nil
}
func (formatter *formatter) extractFormatterFunc(index int) (FormatterFunc, int, error) {
letterSequence := formatter.extractLetterSequence(index)
if len(letterSequence) == 0 {
return nil, 0, fmt.Errorf("format error: lack of formatter after %c at %d", FormatterSymbol, index)
}
function, formatterLength, ok := formatter.findFormatterFunc(letterSequence)
if ok {
return function, index + formatterLength - 1, nil
}
function, formatterLength, ok, err := formatter.findFormatterFuncParametrized(letterSequence, index)
if err != nil {
return nil, 0, err
}
if ok {
return function, index + formatterLength - 1, nil
}
return nil, 0, errors.New("format error: unrecognized formatter at " + strconv.Itoa(index) + ": " + letterSequence)
}
func (formatter *formatter) extractLetterSequence(index int) string {
letters := ""
bytesToParse := []byte(formatter.fmtStringOriginal[index:])
runeCount := utf8.RuneCount(bytesToParse)
for i := 0; i < runeCount; i++ {
rune, runeSize := utf8.DecodeRune(bytesToParse)
bytesToParse = bytesToParse[runeSize:]
if unicode.IsLetter(rune) {
letters += string(rune)
} else {
break
}
}
return letters
}
func (formatter *formatter) findFormatterFunc(letters string) (FormatterFunc, int, bool) {
currentVerb := letters
for i := 0; i < len(letters); i++ {
function, ok := formatterFuncs[currentVerb]
if ok {
return function, len(currentVerb), ok
}
currentVerb = currentVerb[:len(currentVerb)-1]
}
return nil, 0, false
}
func (formatter *formatter) findFormatterFuncParametrized(letters string, lettersStartIndex int) (FormatterFunc, int, bool, error) {
currentVerb := letters
for i := 0; i < len(letters); i++ {
functionCreator, ok := formatterFuncsParameterized[currentVerb]
if ok {
parameter := ""
parameterLen := 0
isVerbEqualsLetters := i == 0 // if not, then letter goes after formatter, and formatter is parameterless
if isVerbEqualsLetters {
userParameter := ""
var err error
userParameter, parameterLen, ok, err = formatter.findparameter(lettersStartIndex + len(currentVerb))
if ok {
parameter = userParameter
} else if err != nil {
return nil, 0, false, err
}
}
return functionCreator(parameter), len(currentVerb) + parameterLen, true, nil
}
currentVerb = currentVerb[:len(currentVerb)-1]
}
return nil, 0, false, nil
}
func (formatter *formatter) findparameter(startIndex int) (string, int, bool, error) {
if len(formatter.fmtStringOriginal) == startIndex || formatter.fmtStringOriginal[startIndex] != formatterParameterStart {
return "", 0, false, nil
}
endIndex := strings.Index(formatter.fmtStringOriginal[startIndex:], string(formatterParameterEnd))
if endIndex == -1 {
return "", 0, false, fmt.Errorf("Unmatched parenthesis or invalid parameter at %d: %s",
startIndex, formatter.fmtStringOriginal[startIndex:])
}
endIndex += startIndex
length := endIndex - startIndex + 1
return formatter.fmtStringOriginal[startIndex+1 : endIndex], length, true, nil
}
// Format processes a message with special formatters, log level, and context. Returns formatted string
// with all formatter identifiers changed to appropriate values.
func (formatter *formatter) Format(message string, level LogLevel, context LogContextInterface) string {
if len(formatter.formatterFuncs) == 0 {
return formatter.fmtString
}
params := make([]interface{}, len(formatter.formatterFuncs))
for i, function := range formatter.formatterFuncs {
params[i] = function(message, level, context)
}
return fmt.Sprintf(formatter.fmtString, params...)
}
func (formatter *formatter) String() string {
return formatter.fmtStringOriginal
}
//=====================================================
const (
wrongLogLevel = "WRONG_LOGLEVEL"
wrongEscapeCode = "WRONG_ESCAPE"
)
var levelToString = map[LogLevel]string{
TraceLvl: "Trace",
DebugLvl: "Debug",
InfoLvl: "Info",
WarnLvl: "Warn",
ErrorLvl: "Error",
CriticalLvl: "Critical",
Off: "Off",
}
var levelToShortString = map[LogLevel]string{
TraceLvl: "Trc",
DebugLvl: "Dbg",
InfoLvl: "Inf",
WarnLvl: "Wrn",
ErrorLvl: "Err",
CriticalLvl: "Crt",
Off: "Off",
}
var levelToShortestString = map[LogLevel]string{
TraceLvl: "t",
DebugLvl: "d",
InfoLvl: "i",
WarnLvl: "w",
ErrorLvl: "e",
CriticalLvl: "c",
Off: "o",
}
func formatterLevel(message string, level LogLevel, context LogContextInterface) interface{} {
levelStr, ok := levelToString[level]
if !ok {
return wrongLogLevel
}
return levelStr
}
func formatterLev(message string, level LogLevel, context LogContextInterface) interface{} {
levelStr, ok := levelToShortString[level]
if !ok {
return wrongLogLevel
}
return levelStr
}
func formatterLEVEL(message string, level LogLevel, context LogContextInterface) interface{} {
return strings.ToTitle(formatterLevel(message, level, context).(string))
}
func formatterLEV(message string, level LogLevel, context LogContextInterface) interface{} {
return strings.ToTitle(formatterLev(message, level, context).(string))
}
func formatterl(message string, level LogLevel, context LogContextInterface) interface{} {
levelStr, ok := levelToShortestString[level]
if !ok {
return wrongLogLevel
}
return levelStr
}
func formatterMsg(message string, level LogLevel, context LogContextInterface) interface{} {
return message
}
func formatterFullPath(message string, level LogLevel, context LogContextInterface) interface{} {
return context.FullPath()
}
func formatterFile(message string, level LogLevel, context LogContextInterface) interface{} {
return context.FileName()
}
func formatterRelFile(message string, level LogLevel, context LogContextInterface) interface{} {
return context.ShortPath()
}
func FormatterFunction(message string, level LogLevel, context LogContextInterface) interface{} {
return context.Func()
}
func FormatterFunctionShort(message string, level LogLevel, context LogContextInterface) interface{} {
f := context.Func()
spl := strings.Split(f, ".")
return spl[len(spl)-1]
}
func formatterLine(message string, level LogLevel, context LogContextInterface) interface{} {
return context.Line()
}
func formatterTime(message string, level LogLevel, context LogContextInterface) interface{} {
return context.CallTime().Format(TimeFormat)
}
func formatterUTCTime(message string, level LogLevel, context LogContextInterface) interface{} {
return context.CallTime().UTC().Format(TimeFormat)
}
func formatterNs(message string, level LogLevel, context LogContextInterface) interface{} {
return context.CallTime().UnixNano()
}
func formatterUTCNs(message string, level LogLevel, context LogContextInterface) interface{} {
return context.CallTime().UTC().UnixNano()
}
func formattern(message string, level LogLevel, context LogContextInterface) interface{} {
return "\n"
}
func formattert(message string, level LogLevel, context LogContextInterface) interface{} {
return "\t"
}
func createDateTimeFormatterFunc(dateTimeFormat string) FormatterFunc {
format := dateTimeFormat
if format == "" {
format = DateDefaultFormat
}
return func(message string, level LogLevel, context LogContextInterface) interface{} {
return context.CallTime().Format(format)
}
}
func createUTCDateTimeFormatterFunc(dateTimeFormat string) FormatterFunc {
format := dateTimeFormat
if format == "" {
format = DateDefaultFormat
}
return func(message string, level LogLevel, context LogContextInterface) interface{} {
return context.CallTime().UTC().Format(format)
}
}
func createANSIEscapeFunc(escapeCodeString string) FormatterFunc {
return func(message string, level LogLevel, context LogContextInterface) interface{} {
if len(escapeCodeString) == 0 {
return wrongEscapeCode
}
return fmt.Sprintf("%c[%sm", 0x1B, escapeCodeString)
}
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"fmt"
"strings"
"testing"
"time"
)
const (
TestFuncName = "TestFormats"
)
type formatTest struct {
formatString string
input string
inputLogLevel LogLevel
expectedOutput string
errorExpected bool
}
var formatTests = []formatTest{
{"test", "abcdef", TraceLvl, "test", false},
{"", "abcdef", TraceLvl, "", false},
{"%Level", "", TraceLvl, "Trace", false},
{"%Level", "", DebugLvl, "Debug", false},
{"%Level", "", InfoLvl, "Info", false},
{"%Level", "", WarnLvl, "Warn", false},
{"%Level", "", ErrorLvl, "Error", false},
{"%Level", "", CriticalLvl, "Critical", false},
{"[%Level]", "", TraceLvl, "[Trace]", false},
{"[%Level]", "abc", DebugLvl, "[Debug]", false},
{"%LevelLevel", "", InfoLvl, "InfoLevel", false},
{"[%Level][%Level]", "", WarnLvl, "[Warn][Warn]", false},
{"[%Level]X[%Level]", "", ErrorLvl, "[Error]X[Error]", false},
{"%Levelll", "", CriticalLvl, "Criticalll", false},
{"%Lvl", "", TraceLvl, "", true},
{"%%Level", "", DebugLvl, "%Level", false},
{"%Level%", "", InfoLvl, "", true},
{"%sevel", "", WarnLvl, "", true},
{"Level", "", ErrorLvl, "Level", false},
{"%LevelLevel", "", CriticalLvl, "CriticalLevel", false},
{"%Lev", "", TraceLvl, "Trc", false},
{"%Lev", "", DebugLvl, "Dbg", false},
{"%Lev", "", InfoLvl, "Inf", false},
{"%Lev", "", WarnLvl, "Wrn", false},
{"%Lev", "", ErrorLvl, "Err", false},
{"%Lev", "", CriticalLvl, "Crt", false},
{"[%Lev]", "", TraceLvl, "[Trc]", false},
{"[%Lev]", "abc", DebugLvl, "[Dbg]", false},
{"%LevLevel", "", InfoLvl, "InfLevel", false},
{"[%Level][%Lev]", "", WarnLvl, "[Warn][Wrn]", false},
{"[%Lev]X[%Lev]", "", ErrorLvl, "[Err]X[Err]", false},
{"%Levll", "", CriticalLvl, "Crtll", false},
{"%LEVEL", "", TraceLvl, "TRACE", false},
{"%LEVEL", "", DebugLvl, "DEBUG", false},
{"%LEVEL", "", InfoLvl, "INFO", false},
{"%LEVEL", "", WarnLvl, "WARN", false},
{"%LEVEL", "", ErrorLvl, "ERROR", false},
{"%LEVEL", "", CriticalLvl, "CRITICAL", false},
{"[%LEVEL]", "", TraceLvl, "[TRACE]", false},
{"[%LEVEL]", "abc", DebugLvl, "[DEBUG]", false},
{"%LEVELLEVEL", "", InfoLvl, "INFOLEVEL", false},
{"[%LEVEL][%LEVEL]", "", WarnLvl, "[WARN][WARN]", false},
{"[%LEVEL]X[%Level]", "", ErrorLvl, "[ERROR]X[Error]", false},
{"%LEVELLL", "", CriticalLvl, "CRITICALLL", false},
{"%LEV", "", TraceLvl, "TRC", false},
{"%LEV", "", DebugLvl, "DBG", false},
{"%LEV", "", InfoLvl, "INF", false},
{"%LEV", "", WarnLvl, "WRN", false},
{"%LEV", "", ErrorLvl, "ERR", false},
{"%LEV", "", CriticalLvl, "CRT", false},
{"[%LEV]", "", TraceLvl, "[TRC]", false},
{"[%LEV]", "abc", DebugLvl, "[DBG]", false},
{"%LEVLEVEL", "", InfoLvl, "INFLEVEL", false},
{"[%LEVEL][%LEV]", "", WarnLvl, "[WARN][WRN]", false},
{"[%LEV]X[%LEV]", "", ErrorLvl, "[ERR]X[ERR]", false},
{"%LEVLL", "", CriticalLvl, "CRTLL", false},
{"%l", "", TraceLvl, "t", false},
{"%l", "", DebugLvl, "d", false},
{"%l", "", InfoLvl, "i", false},
{"%l", "", WarnLvl, "w", false},
{"%l", "", ErrorLvl, "e", false},
{"%l", "", CriticalLvl, "c", false},
{"[%l]", "", TraceLvl, "[t]", false},
{"[%l]", "abc", DebugLvl, "[d]", false},
{"%Level%Msg", "", TraceLvl, "Trace", false},
{"%Level%Msg", "A", DebugLvl, "DebugA", false},
{"%Level%Msg", "", InfoLvl, "Info", false},
{"%Level%Msg", "test", WarnLvl, "Warntest", false},
{"%Level%Msg", " ", ErrorLvl, "Error ", false},
{"%Level%Msg", "", CriticalLvl, "Critical", false},
{"[%Level]", "", TraceLvl, "[Trace]", false},
{"[%Level]", "abc", DebugLvl, "[Debug]", false},
{"%Level%MsgLevel", "A", InfoLvl, "InfoALevel", false},
{"[%Level]%Msg[%Level]", "test", WarnLvl, "[Warn]test[Warn]", false},
{"[%Level]%MsgX[%Level]", "test", ErrorLvl, "[Error]testX[Error]", false},
{"%Levell%Msgl", "Test", CriticalLvl, "CriticallTestl", false},
{"%Lev%Msg%LEVEL%LEV%l%Msg", "Test", InfoLvl, "InfTestINFOINFiTest", false},
{"%n", "", CriticalLvl, "\n", false},
{"%t", "", CriticalLvl, "\t", false},
}
func TestFormats(t *testing.T) {
context, conErr := currentContext()
if conErr != nil {
t.Fatal("Cannot get current context:" + conErr.Error())
return
}
for _, test := range formatTests {
form, err := newFormatter(test.formatString)
if (err != nil) != test.errorExpected {
t.Errorf("input: %s \nInput LL: %s\n* Expected error:%t Got error: %t\n",
test.input, test.inputLogLevel, test.errorExpected, (err != nil))
if err != nil {
t.Logf("%s\n", err.Error())
}
continue
} else if err != nil {
continue
}
msg := form.Format(test.input, test.inputLogLevel, context)
if err == nil && msg != test.expectedOutput {
t.Errorf("format: %s \nInput: %s \nInput LL: %s\n* Expected: %s \n* Got: %s\n",
test.formatString, test.input, test.inputLogLevel, test.expectedOutput, msg)
}
}
}
func TestDateFormat(t *testing.T) {
_, err := newFormatter("%Date")
if err != nil {
t.Error("Unexpected error: " + err.Error())
}
}
func TestDateParameterizedFormat(t *testing.T) {
testFormat := "Mon Jan 02 2006 15:04:05"
preciseForamt := "Mon Jan 02 2006 15:04:05.000"
context, conErr := currentContext()
if conErr != nil {
t.Fatal("Cannot get current context:" + conErr.Error())
return
}
form, err := newFormatter("%Date(" + preciseForamt + ")")
if err != nil {
t.Error("Unexpected error: " + err.Error())
}
dateBefore := time.Now().Format(testFormat)
msg := form.Format("", TraceLvl, context)
dateAfter := time.Now().Format(testFormat)
if !strings.HasPrefix(msg, dateBefore) && !strings.HasPrefix(msg, dateAfter) {
t.Errorf("incorrect message: %v. Expected %v or %v", msg, dateBefore, dateAfter)
}
_, err = newFormatter("%Date(" + preciseForamt)
if err == nil {
t.Error("Expected error for invalid format")
}
}
func createTestFormatter(format string) FormatterFunc {
return func(message string, level LogLevel, context LogContextInterface) interface{} {
return "TEST " + context.Func() + " TEST"
}
}
func TestCustomFormatterRegistration(t *testing.T) {
err := RegisterCustomFormatter("Level", createTestFormatter)
if err == nil {
t.Errorf("expected an error when trying to register a custom formatter with a reserved alias")
}
err = RegisterCustomFormatter("EscM", createTestFormatter)
if err == nil {
t.Errorf("expected an error when trying to register a custom formatter with a reserved parameterized alias")
}
err = RegisterCustomFormatter("TEST", createTestFormatter)
if err != nil {
t.Fatalf("Registering custom formatter: unexpected error: %s", err)
}
err = RegisterCustomFormatter("TEST", createTestFormatter)
if err == nil {
t.Errorf("expected an error when trying to register a custom formatter with duplicate name")
}
context, conErr := currentContext()
if conErr != nil {
t.Fatal("Cannot get current context:" + conErr.Error())
return
}
form, err := newFormatter("%Msg %TEST 123")
if err != nil {
t.Fatalf("%s\n", err.Error())
}
expected := fmt.Sprintf("test TEST %sTestCustomFormatterRegistration TEST 123", commonPrefix)
msg := form.Format("test", DebugLvl, context)
if msg != expected {
t.Fatalf("Custom formatter: invalid output. Expected: '%s'. Got: '%s'", expected, msg)
}
}

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package seelog
// Base struct for custom errors.
type baseError struct {
message string
}
func (be baseError) Error() string {
return be.message
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
"strconv"
"testing"
)
// bytesVerifier is a byte receiver which is used for correct input testing.
// It allows to compare expected result and actual result in context of received bytes.
type bytesVerifier struct {
expectedBytes []byte // bytes that are expected to be written in next Write call
waitingForInput bool // true if verifier is waiting for a Write call
writtenData []byte // real bytes that actually were received during the last Write call
testEnv *testing.T
}
func newBytesVerifier(t *testing.T) (*bytesVerifier, error) {
if t == nil {
return nil, errors.New("testing environment param is nil")
}
verifier := new(bytesVerifier)
verifier.testEnv = t
return verifier, nil
}
// Write is used to check whether verifier was waiting for input and whether bytes are the same as expectedBytes.
// After Write call, waitingForInput is set to false.
func (verifier *bytesVerifier) Write(bytes []byte) (n int, err error) {
if !verifier.waitingForInput {
verifier.testEnv.Errorf("unexpected input: %v", string(bytes))
return
}
verifier.waitingForInput = false
verifier.writtenData = bytes
if verifier.expectedBytes != nil {
if bytes == nil {
verifier.testEnv.Errorf("incoming 'bytes' is nil")
} else {
if len(bytes) != len(verifier.expectedBytes) {
verifier.testEnv.Errorf("'Bytes' has unexpected len. Expected: %d. Got: %d. . Expected string: %q. Got: %q",
len(verifier.expectedBytes), len(bytes), string(verifier.expectedBytes), string(bytes))
} else {
for i := 0; i < len(bytes); i++ {
if verifier.expectedBytes[i] != bytes[i] {
verifier.testEnv.Errorf("incorrect data on position %d. Expected: %d. Got: %d. Expected string: %q. Got: %q",
i, verifier.expectedBytes[i], bytes[i], string(verifier.expectedBytes), string(bytes))
break
}
}
}
}
}
return len(bytes), nil
}
func (verifier *bytesVerifier) ExpectBytes(bytes []byte) {
verifier.waitingForInput = true
verifier.expectedBytes = bytes
}
func (verifier *bytesVerifier) MustNotExpect() {
if verifier.waitingForInput {
errorText := "Unexpected input: "
if verifier.expectedBytes != nil {
errorText += "len = " + strconv.Itoa(len(verifier.expectedBytes))
errorText += ". text = " + string(verifier.expectedBytes)
}
verifier.testEnv.Errorf(errorText)
}
}
func (verifier *bytesVerifier) Close() error {
return nil
}
// nullWriter implements io.Writer inteface and does nothing, always returning a successful write result
type nullWriter struct {
}
func (writer *nullWriter) Write(bytes []byte) (n int, err error) {
return len(bytes), nil
}
func (writer *nullWriter) Close() error {
return nil
}

403
vendor/github.com/cihub/seelog/internals_fsutils.go generated vendored Normal file
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@ -0,0 +1,403 @@
package seelog
import (
"archive/zip"
"bytes"
"fmt"
"io"
"io/ioutil"
"os"
"path/filepath"
"sync"
)
// File and directory permitions.
const (
defaultFilePermissions = 0666
defaultDirectoryPermissions = 0767
)
const (
// Max number of directories can be read asynchronously.
maxDirNumberReadAsync = 1000
)
type cannotOpenFileError struct {
baseError
}
func newCannotOpenFileError(fname string) *cannotOpenFileError {
return &cannotOpenFileError{baseError{message: "Cannot open file: " + fname}}
}
type notDirectoryError struct {
baseError
}
func newNotDirectoryError(dname string) *notDirectoryError {
return &notDirectoryError{baseError{message: dname + " is not directory"}}
}
// fileFilter is a filtering criteria function for '*os.File'.
// Must return 'false' to set aside the given file.
type fileFilter func(os.FileInfo, *os.File) bool
// filePathFilter is a filtering creteria function for file path.
// Must return 'false' to set aside the given file.
type filePathFilter func(filePath string) bool
// GetSubdirNames returns a list of directories found in
// the given one with dirPath.
func getSubdirNames(dirPath string) ([]string, error) {
fi, err := os.Stat(dirPath)
if err != nil {
return nil, err
}
if !fi.IsDir() {
return nil, newNotDirectoryError(dirPath)
}
dd, err := os.Open(dirPath)
// Cannot open file.
if err != nil {
if dd != nil {
dd.Close()
}
return nil, err
}
defer dd.Close()
// TODO: Improve performance by buffering reading.
allEntities, err := dd.Readdir(-1)
if err != nil {
return nil, err
}
subDirs := []string{}
for _, entity := range allEntities {
if entity.IsDir() {
subDirs = append(subDirs, entity.Name())
}
}
return subDirs, nil
}
// getSubdirAbsPaths recursively visit all the subdirectories
// starting from the given directory and returns absolute paths for them.
func getAllSubdirAbsPaths(dirPath string) (res []string, err error) {
dps, err := getSubdirAbsPaths(dirPath)
if err != nil {
res = []string{}
return
}
res = append(res, dps...)
for _, dp := range dps {
sdps, err := getAllSubdirAbsPaths(dp)
if err != nil {
return []string{}, err
}
res = append(res, sdps...)
}
return
}
// getSubdirAbsPaths supplies absolute paths for all subdirectiries in a given directory.
// Input: (I1) dirPath - absolute path of a directory in question.
// Out: (O1) - slice of subdir asbolute paths; (O2) - error of the operation.
// Remark: If error (O2) is non-nil then (O1) is nil and vice versa.
func getSubdirAbsPaths(dirPath string) ([]string, error) {
sdns, err := getSubdirNames(dirPath)
if err != nil {
return nil, err
}
rsdns := []string{}
for _, sdn := range sdns {
rsdns = append(rsdns, filepath.Join(dirPath, sdn))
}
return rsdns, nil
}
// getOpenFilesInDir supplies a slice of os.File pointers to files located in the directory.
// Remark: Ignores files for which fileFilter returns false
func getOpenFilesInDir(dirPath string, fFilter fileFilter) ([]*os.File, error) {
dfi, err := os.Open(dirPath)
if err != nil {
return nil, newCannotOpenFileError("Cannot open directory " + dirPath)
}
defer dfi.Close()
// Size of read buffer (i.e. chunk of items read at a time).
rbs := 64
resFiles := []*os.File{}
L:
for {
// Read directory entities by reasonable chuncks
// to prevent overflows on big number of files.
fis, e := dfi.Readdir(rbs)
switch e {
// It's OK.
case nil:
// Do nothing, just continue cycle.
case io.EOF:
break L
// Something went wrong.
default:
return nil, e
}
// THINK: Maybe, use async running.
for _, fi := range fis {
// NB: On Linux this could be a problem as
// there are lots of file types available.
if !fi.IsDir() {
f, e := os.Open(filepath.Join(dirPath, fi.Name()))
if e != nil {
if f != nil {
f.Close()
}
// THINK: Add nil as indicator that a problem occurred.
resFiles = append(resFiles, nil)
continue
}
// Check filter condition.
if fFilter != nil && !fFilter(fi, f) {
continue
}
resFiles = append(resFiles, f)
}
}
}
return resFiles, nil
}
func isRegular(m os.FileMode) bool {
return m&os.ModeType == 0
}
// getDirFilePaths return full paths of the files located in the directory.
// Remark: Ignores files for which fileFilter returns false.
func getDirFilePaths(dirPath string, fpFilter filePathFilter, pathIsName bool) ([]string, error) {
dfi, err := os.Open(dirPath)
if err != nil {
return nil, newCannotOpenFileError("Cannot open directory " + dirPath)
}
defer dfi.Close()
var absDirPath string
if !filepath.IsAbs(dirPath) {
absDirPath, err = filepath.Abs(dirPath)
if err != nil {
return nil, fmt.Errorf("cannot get absolute path of directory: %s", err.Error())
}
} else {
absDirPath = dirPath
}
// TODO: check if dirPath is really directory.
// Size of read buffer (i.e. chunk of items read at a time).
rbs := 2 << 5
filePaths := []string{}
var fp string
L:
for {
// Read directory entities by reasonable chuncks
// to prevent overflows on big number of files.
fis, e := dfi.Readdir(rbs)
switch e {
// It's OK.
case nil:
// Do nothing, just continue cycle.
case io.EOF:
break L
// Indicate that something went wrong.
default:
return nil, e
}
// THINK: Maybe, use async running.
for _, fi := range fis {
// NB: Should work on every Windows and non-Windows OS.
if isRegular(fi.Mode()) {
if pathIsName {
fp = fi.Name()
} else {
// Build full path of a file.
fp = filepath.Join(absDirPath, fi.Name())
}
// Check filter condition.
if fpFilter != nil && !fpFilter(fp) {
continue
}
filePaths = append(filePaths, fp)
}
}
}
return filePaths, nil
}
// getOpenFilesByDirectoryAsync runs async reading directories 'dirPaths' and inserts pairs
// in map 'filesInDirMap': Key - directory name, value - *os.File slice.
func getOpenFilesByDirectoryAsync(
dirPaths []string,
fFilter fileFilter,
filesInDirMap map[string][]*os.File,
) error {
n := len(dirPaths)
if n > maxDirNumberReadAsync {
return fmt.Errorf("number of input directories to be read exceeded max value %d", maxDirNumberReadAsync)
}
type filesInDirResult struct {
DirName string
Files []*os.File
Error error
}
dirFilesChan := make(chan *filesInDirResult, n)
var wg sync.WaitGroup
// Register n goroutines which are going to do work.
wg.Add(n)
for i := 0; i < n; i++ {
// Launch asynchronously the piece of work.
go func(dirPath string) {
fs, e := getOpenFilesInDir(dirPath, fFilter)
dirFilesChan <- &filesInDirResult{filepath.Base(dirPath), fs, e}
// Mark the current goroutine as finished (work is done).
wg.Done()
}(dirPaths[i])
}
// Wait for all goroutines to finish their work.
wg.Wait()
// Close the error channel to let for-range clause
// get all the buffered values without blocking and quit in the end.
close(dirFilesChan)
for fidr := range dirFilesChan {
if fidr.Error == nil {
// THINK: What will happen if the key is already present?
filesInDirMap[fidr.DirName] = fidr.Files
} else {
return fidr.Error
}
}
return nil
}
func copyFile(sf *os.File, dst string) (int64, error) {
df, err := os.Create(dst)
if err != nil {
return 0, err
}
defer df.Close()
return io.Copy(df, sf)
}
// fileExists return flag whether a given file exists
// and operation error if an unclassified failure occurs.
func fileExists(path string) (bool, error) {
_, err := os.Stat(path)
if err != nil {
if os.IsNotExist(err) {
return false, nil
}
return false, err
}
return true, nil
}
// createDirectory makes directory with a given name
// making all parent directories if necessary.
func createDirectory(dirPath string) error {
var dPath string
var err error
if !filepath.IsAbs(dirPath) {
dPath, err = filepath.Abs(dirPath)
if err != nil {
return err
}
} else {
dPath = dirPath
}
exists, err := fileExists(dPath)
if err != nil {
return err
}
if exists {
return nil
}
return os.MkdirAll(dPath, os.ModeDir)
}
// tryRemoveFile gives a try removing the file
// only ignoring an error when the file does not exist.
func tryRemoveFile(filePath string) (err error) {
err = os.Remove(filePath)
if os.IsNotExist(err) {
err = nil
return
}
return
}
// Unzips a specified zip file. Returns filename->filebytes map.
func unzip(archiveName string) (map[string][]byte, error) {
// Open a zip archive for reading.
r, err := zip.OpenReader(archiveName)
if err != nil {
return nil, err
}
defer r.Close()
// Files to be added to archive
// map file name to contents
files := make(map[string][]byte)
// Iterate through the files in the archive,
// printing some of their contents.
for _, f := range r.File {
rc, err := f.Open()
if err != nil {
return nil, err
}
bts, err := ioutil.ReadAll(rc)
rcErr := rc.Close()
if err != nil {
return nil, err
}
if rcErr != nil {
return nil, rcErr
}
files[f.Name] = bts
}
return files, nil
}
// Creates a zip file with the specified file names and byte contents.
func createZip(archiveName string, files map[string][]byte) error {
// Create a buffer to write our archive to.
buf := new(bytes.Buffer)
// Create a new zip archive.
w := zip.NewWriter(buf)
// Write files
for fpath, fcont := range files {
f, err := w.Create(fpath)
if err != nil {
return err
}
_, err = f.Write([]byte(fcont))
if err != nil {
return err
}
}
// Make sure to check the error on Close.
err := w.Close()
if err != nil {
return err
}
err = ioutil.WriteFile(archiveName, buf.Bytes(), defaultFilePermissions)
if err != nil {
return err
}
return nil
}

175
vendor/github.com/cihub/seelog/internals_xmlnode.go generated vendored Normal file
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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"encoding/xml"
"errors"
"fmt"
"io"
"strings"
)
type xmlNode struct {
name string
attributes map[string]string
children []*xmlNode
value string
}
func newNode() *xmlNode {
node := new(xmlNode)
node.children = make([]*xmlNode, 0)
node.attributes = make(map[string]string)
return node
}
func (node *xmlNode) String() string {
str := fmt.Sprintf("<%s", node.name)
for attrName, attrVal := range node.attributes {
str += fmt.Sprintf(" %s=\"%s\"", attrName, attrVal)
}
str += ">"
str += node.value
if len(node.children) != 0 {
for _, child := range node.children {
str += fmt.Sprintf("%s", child)
}
}
str += fmt.Sprintf("</%s>", node.name)
return str
}
func (node *xmlNode) unmarshal(startEl xml.StartElement) error {
node.name = startEl.Name.Local
for _, v := range startEl.Attr {
_, alreadyExists := node.attributes[v.Name.Local]
if alreadyExists {
return errors.New("tag '" + node.name + "' has duplicated attribute: '" + v.Name.Local + "'")
}
node.attributes[v.Name.Local] = v.Value
}
return nil
}
func (node *xmlNode) add(child *xmlNode) {
if node.children == nil {
node.children = make([]*xmlNode, 0)
}
node.children = append(node.children, child)
}
func (node *xmlNode) hasChildren() bool {
return node.children != nil && len(node.children) > 0
}
//=============================================
func unmarshalConfig(reader io.Reader) (*xmlNode, error) {
xmlParser := xml.NewDecoder(reader)
config, err := unmarshalNode(xmlParser, nil)
if err != nil {
return nil, err
}
if config == nil {
return nil, errors.New("xml has no content")
}
nextConfigEntry, err := unmarshalNode(xmlParser, nil)
if nextConfigEntry != nil {
return nil, errors.New("xml contains more than one root element")
}
return config, nil
}
func unmarshalNode(xmlParser *xml.Decoder, curToken xml.Token) (node *xmlNode, err error) {
firstLoop := true
for {
var tok xml.Token
if firstLoop && curToken != nil {
tok = curToken
firstLoop = false
} else {
tok, err = getNextToken(xmlParser)
if err != nil || tok == nil {
return
}
}
switch tt := tok.(type) {
case xml.SyntaxError:
err = errors.New(tt.Error())
return
case xml.CharData:
value := strings.TrimSpace(string([]byte(tt)))
if node != nil {
node.value += value
}
case xml.StartElement:
if node == nil {
node = newNode()
err := node.unmarshal(tt)
if err != nil {
return nil, err
}
} else {
childNode, childErr := unmarshalNode(xmlParser, tok)
if childErr != nil {
return nil, childErr
}
if childNode != nil {
node.add(childNode)
} else {
return
}
}
case xml.EndElement:
return
}
}
}
func getNextToken(xmlParser *xml.Decoder) (tok xml.Token, err error) {
if tok, err = xmlParser.Token(); err != nil {
if err == io.EOF {
err = nil
return
}
return
}
return
}

View file

@ -0,0 +1,196 @@
// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"strings"
"testing"
//"fmt"
"reflect"
)
var testEnv *testing.T
/*func TestWrapper(t *testing.T) {
testEnv = t
s := "<a d='a'><g m='a'></g><g h='t' j='kk'></g></a>"
reader := strings.NewReader(s)
config, err := unmarshalConfig(reader)
if err != nil {
testEnv.Error(err)
return
}
printXML(config, 0)
}
func printXML(node *xmlNode, level int) {
indent := strings.Repeat("\t", level)
fmt.Print(indent + node.name)
for key, value := range node.attributes {
fmt.Print(" " + key + "/" + value)
}
fmt.Println()
for _, child := range node.children {
printXML(child, level+1)
}
}*/
var xmlNodeTests []xmlNodeTest
type xmlNodeTest struct {
testName string
inputXML string
expected interface{}
errorExpected bool
}
func getXMLTests() []xmlNodeTest {
if xmlNodeTests == nil {
xmlNodeTests = make([]xmlNodeTest, 0)
testName := "Simple test"
testXML := `<a></a>`
testExpected := newNode()
testExpected.name = "a"
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, testExpected, false})
testName = "Multiline test"
testXML =
`
<a>
</a>
`
testExpected = newNode()
testExpected.name = "a"
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, testExpected, false})
testName = "Multiline test #2"
testXML =
`
<a>
</a>
`
testExpected = newNode()
testExpected.name = "a"
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, testExpected, false})
testName = "Incorrect names"
testXML = `< a >< /a >`
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, nil, true})
testName = "Comments"
testXML =
`<!-- <abcdef/> -->
<a> <!-- <!--12345-->
</a>
`
testExpected = newNode()
testExpected.name = "a"
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, testExpected, false})
testName = "Multiple roots"
testXML = `<a></a><b></b>`
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, nil, true})
testName = "Multiple roots + incorrect xml"
testXML = `<a></a><b>`
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, nil, true})
testName = "Some unicode and data"
testXML = `<俄语>данные</俄语>`
testExpected = newNode()
testExpected.name = "俄语"
testExpected.value = "данные"
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, testExpected, false})
testName = "Values and children"
testXML = `<俄语>данные<and_a_child></and_a_child></俄语>`
testExpected = newNode()
testExpected.name = "俄语"
testExpected.value = "данные"
child := newNode()
child.name = "and_a_child"
testExpected.children = append(testExpected.children, child)
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, testExpected, false})
testName = "Just children"
testXML = `<俄语><and_a_child></and_a_child></俄语>`
testExpected = newNode()
testExpected.name = "俄语"
child = newNode()
child.name = "and_a_child"
testExpected.children = append(testExpected.children, child)
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, testExpected, false})
testName = "Mixed test"
testXML = `<俄语 a="1" b="2.13" c="abc"><child abc="bca"/><child abc="def"></child></俄语>`
testExpected = newNode()
testExpected.name = "俄语"
testExpected.attributes["a"] = "1"
testExpected.attributes["b"] = "2.13"
testExpected.attributes["c"] = "abc"
child = newNode()
child.name = "child"
child.attributes["abc"] = "bca"
testExpected.children = append(testExpected.children, child)
child = newNode()
child.name = "child"
child.attributes["abc"] = "def"
testExpected.children = append(testExpected.children, child)
xmlNodeTests = append(xmlNodeTests, xmlNodeTest{testName, testXML, testExpected, false})
}
return xmlNodeTests
}
func TestXmlNode(t *testing.T) {
for _, test := range getXMLTests() {
reader := strings.NewReader(test.inputXML)
parsedXML, err := unmarshalConfig(reader)
if (err != nil) != test.errorExpected {
t.Errorf("\n%s:\nXML input: %s\nExpected error:%t. Got error: %t\n", test.testName,
test.inputXML, test.errorExpected, (err != nil))
if err != nil {
t.Logf("%s\n", err.Error())
}
continue
}
if err == nil && !reflect.DeepEqual(parsedXML, test.expected) {
t.Errorf("\n%s:\nXML input: %s\nExpected: %s. \nGot: %s\n", test.testName,
test.inputXML, test.expected, parsedXML)
}
}
}

307
vendor/github.com/cihub/seelog/log.go generated vendored Normal file
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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
"fmt"
"sync"
"time"
)
const (
staticFuncCallDepth = 3 // See 'commonLogger.log' method comments
loggerFuncCallDepth = 3
)
// Current is the logger used in all package level convenience funcs like 'Trace', 'Debug', 'Flush', etc.
var Current LoggerInterface
// Default logger that is created from an empty config: "<seelog/>". It is not closed by a ReplaceLogger call.
var Default LoggerInterface
// Disabled logger that doesn't produce any output in any circumstances. It is neither closed nor flushed by a ReplaceLogger call.
var Disabled LoggerInterface
var pkgOperationsMutex *sync.Mutex
func init() {
pkgOperationsMutex = new(sync.Mutex)
var err error
if Default == nil {
Default, err = LoggerFromConfigAsBytes([]byte("<seelog />"))
}
if Disabled == nil {
Disabled, err = LoggerFromConfigAsBytes([]byte("<seelog levels=\"off\"/>"))
}
if err != nil {
panic(fmt.Sprintf("Seelog couldn't start. Error: %s", err.Error()))
}
Current = Default
}
func createLoggerFromConfig(config *logConfig) (LoggerInterface, error) {
if config.LogType == syncloggerTypeFromString {
return newSyncLogger(config), nil
} else if config.LogType == asyncLooploggerTypeFromString {
return newAsyncLoopLogger(config), nil
} else if config.LogType == asyncTimerloggerTypeFromString {
logData := config.LoggerData
if logData == nil {
return nil, errors.New("async timer data not set")
}
asyncInt, ok := logData.(asyncTimerLoggerData)
if !ok {
return nil, errors.New("invalid async timer data")
}
logger, err := newAsyncTimerLogger(config, time.Duration(asyncInt.AsyncInterval))
if !ok {
return nil, err
}
return logger, nil
} else if config.LogType == adaptiveLoggerTypeFromString {
logData := config.LoggerData
if logData == nil {
return nil, errors.New("adaptive logger parameters not set")
}
adaptData, ok := logData.(adaptiveLoggerData)
if !ok {
return nil, errors.New("invalid adaptive logger parameters")
}
logger, err := newAsyncAdaptiveLogger(
config,
time.Duration(adaptData.MinInterval),
time.Duration(adaptData.MaxInterval),
adaptData.CriticalMsgCount,
)
if err != nil {
return nil, err
}
return logger, nil
}
return nil, errors.New("invalid config log type/data")
}
// UseLogger sets the 'Current' package level logger variable to the specified value.
// This variable is used in all Trace/Debug/... package level convenience funcs.
//
// Example:
//
// after calling
// seelog.UseLogger(somelogger)
// the following:
// seelog.Debug("abc")
// will be equal to
// somelogger.Debug("abc")
//
// IMPORTANT: UseLogger do NOT close the previous logger (only flushes it). So if
// you constantly use it to replace loggers and don't close them in other code, you'll
// end up having memory leaks.
//
// To safely replace loggers, use ReplaceLogger.
func UseLogger(logger LoggerInterface) error {
if logger == nil {
return errors.New("logger can not be nil")
}
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
oldLogger := Current
Current = logger
if oldLogger != nil {
oldLogger.Flush()
}
return nil
}
// ReplaceLogger acts as UseLogger but the logger that was previously
// used is disposed (except Default and Disabled loggers).
//
// Example:
// import log "github.com/cihub/seelog"
//
// func main() {
// logger, err := log.LoggerFromConfigAsFile("seelog.xml")
//
// if err != nil {
// panic(err)
// }
//
// log.ReplaceLogger(logger)
// defer log.Flush()
//
// log.Trace("test")
// log.Debugf("var = %s", "abc")
// }
func ReplaceLogger(logger LoggerInterface) error {
if logger == nil {
return errors.New("logger can not be nil")
}
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
defer func() {
if err := recover(); err != nil {
reportInternalError(fmt.Errorf("recovered from panic during ReplaceLogger: %s", err))
}
}()
if Current == Default {
Current.Flush()
} else if Current != nil && !Current.Closed() && Current != Disabled {
Current.Flush()
Current.Close()
}
Current = logger
return nil
}
// Tracef formats message according to format specifier
// and writes to default logger with log level = Trace.
func Tracef(format string, params ...interface{}) {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
Current.traceWithCallDepth(staticFuncCallDepth, newLogFormattedMessage(format, params))
}
// Debugf formats message according to format specifier
// and writes to default logger with log level = Debug.
func Debugf(format string, params ...interface{}) {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
Current.debugWithCallDepth(staticFuncCallDepth, newLogFormattedMessage(format, params))
}
// Infof formats message according to format specifier
// and writes to default logger with log level = Info.
func Infof(format string, params ...interface{}) {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
Current.infoWithCallDepth(staticFuncCallDepth, newLogFormattedMessage(format, params))
}
// Warnf formats message according to format specifier and writes to default logger with log level = Warn
func Warnf(format string, params ...interface{}) error {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
message := newLogFormattedMessage(format, params)
Current.warnWithCallDepth(staticFuncCallDepth, message)
return errors.New(message.String())
}
// Errorf formats message according to format specifier and writes to default logger with log level = Error
func Errorf(format string, params ...interface{}) error {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
message := newLogFormattedMessage(format, params)
Current.errorWithCallDepth(staticFuncCallDepth, message)
return errors.New(message.String())
}
// Criticalf formats message according to format specifier and writes to default logger with log level = Critical
func Criticalf(format string, params ...interface{}) error {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
message := newLogFormattedMessage(format, params)
Current.criticalWithCallDepth(staticFuncCallDepth, message)
return errors.New(message.String())
}
// Trace formats message using the default formats for its operands and writes to default logger with log level = Trace
func Trace(v ...interface{}) {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
Current.traceWithCallDepth(staticFuncCallDepth, newLogMessage(v))
}
// Debug formats message using the default formats for its operands and writes to default logger with log level = Debug
func Debug(v ...interface{}) {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
Current.debugWithCallDepth(staticFuncCallDepth, newLogMessage(v))
}
// Info formats message using the default formats for its operands and writes to default logger with log level = Info
func Info(v ...interface{}) {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
Current.infoWithCallDepth(staticFuncCallDepth, newLogMessage(v))
}
// Warn formats message using the default formats for its operands and writes to default logger with log level = Warn
func Warn(v ...interface{}) error {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
message := newLogMessage(v)
Current.warnWithCallDepth(staticFuncCallDepth, message)
return errors.New(message.String())
}
// Error formats message using the default formats for its operands and writes to default logger with log level = Error
func Error(v ...interface{}) error {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
message := newLogMessage(v)
Current.errorWithCallDepth(staticFuncCallDepth, message)
return errors.New(message.String())
}
// Critical formats message using the default formats for its operands and writes to default logger with log level = Critical
func Critical(v ...interface{}) error {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
message := newLogMessage(v)
Current.criticalWithCallDepth(staticFuncCallDepth, message)
return errors.New(message.String())
}
// Flush immediately processes all currently queued messages and all currently buffered messages.
// It is a blocking call which returns only after the queue is empty and all the buffers are empty.
//
// If Flush is called for a synchronous logger (type='sync'), it only flushes buffers (e.g. '<buffered>' receivers)
// , because there is no queue.
//
// Call this method when your app is going to shut down not to lose any log messages.
func Flush() {
pkgOperationsMutex.Lock()
defer pkgOperationsMutex.Unlock()
Current.Flush()
}

362
vendor/github.com/cihub/seelog/logger.go generated vendored Normal file
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@ -0,0 +1,362 @@
// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
"fmt"
"os"
"sync"
)
func reportInternalError(err error) {
fmt.Fprintf(os.Stderr, "seelog internal error: %s\n", err)
}
// LoggerInterface represents structs capable of logging Seelog messages
type LoggerInterface interface {
// Tracef formats message according to format specifier
// and writes to log with level = Trace.
Tracef(format string, params ...interface{})
// Debugf formats message according to format specifier
// and writes to log with level = Debug.
Debugf(format string, params ...interface{})
// Infof formats message according to format specifier
// and writes to log with level = Info.
Infof(format string, params ...interface{})
// Warnf formats message according to format specifier
// and writes to log with level = Warn.
Warnf(format string, params ...interface{}) error
// Errorf formats message according to format specifier
// and writes to log with level = Error.
Errorf(format string, params ...interface{}) error
// Criticalf formats message according to format specifier
// and writes to log with level = Critical.
Criticalf(format string, params ...interface{}) error
// Trace formats message using the default formats for its operands
// and writes to log with level = Trace
Trace(v ...interface{})
// Debug formats message using the default formats for its operands
// and writes to log with level = Debug
Debug(v ...interface{})
// Info formats message using the default formats for its operands
// and writes to log with level = Info
Info(v ...interface{})
// Warn formats message using the default formats for its operands
// and writes to log with level = Warn
Warn(v ...interface{}) error
// Error formats message using the default formats for its operands
// and writes to log with level = Error
Error(v ...interface{}) error
// Critical formats message using the default formats for its operands
// and writes to log with level = Critical
Critical(v ...interface{}) error
traceWithCallDepth(callDepth int, message fmt.Stringer)
debugWithCallDepth(callDepth int, message fmt.Stringer)
infoWithCallDepth(callDepth int, message fmt.Stringer)
warnWithCallDepth(callDepth int, message fmt.Stringer)
errorWithCallDepth(callDepth int, message fmt.Stringer)
criticalWithCallDepth(callDepth int, message fmt.Stringer)
// Close flushes all the messages in the logger and closes it. It cannot be used after this operation.
Close()
// Flush flushes all the messages in the logger.
Flush()
// Closed returns true if the logger was previously closed.
Closed() bool
// SetAdditionalStackDepth sets the additional number of frames to skip by runtime.Caller
// when getting function information needed to print seelog format identifiers such as %Func or %File.
//
// This func may be used when you wrap seelog funcs and want to print caller info of you own
// wrappers instead of seelog func callers. In this case you should set depth = 1. If you then
// wrap your wrapper, you should set depth = 2, etc.
//
// NOTE: Incorrect depth value may lead to errors in runtime.Caller evaluation or incorrect
// function/file names in log files. Do not use it if you are not going to wrap seelog funcs.
// You may reset the value to default using a SetAdditionalStackDepth(0) call.
SetAdditionalStackDepth(depth int) error
}
// innerLoggerInterface is an internal logging interface
type innerLoggerInterface interface {
innerLog(level LogLevel, context LogContextInterface, message fmt.Stringer)
Flush()
}
// [file path][func name][level] -> [allowed]
type allowedContextCache map[string]map[string]map[LogLevel]bool
// commonLogger contains all common data needed for logging and contains methods used to log messages.
type commonLogger struct {
config *logConfig // Config used for logging
contextCache allowedContextCache // Caches whether log is enabled for specific "full path-func name-level" sets
closed bool // 'true' when all writers are closed, all data is flushed, logger is unusable. Must be accessed while holding closedM
closedM sync.RWMutex
m sync.Mutex // Mutex for main operations
unusedLevels []bool
innerLogger innerLoggerInterface
addStackDepth int // Additional stack depth needed for correct seelog caller context detection
}
func newCommonLogger(config *logConfig, internalLogger innerLoggerInterface) *commonLogger {
cLogger := new(commonLogger)
cLogger.config = config
cLogger.contextCache = make(allowedContextCache)
cLogger.unusedLevels = make([]bool, Off)
cLogger.fillUnusedLevels()
cLogger.innerLogger = internalLogger
return cLogger
}
func (cLogger *commonLogger) SetAdditionalStackDepth(depth int) error {
if depth < 0 {
return fmt.Errorf("negative depth: %d", depth)
}
cLogger.m.Lock()
cLogger.addStackDepth = depth
cLogger.m.Unlock()
return nil
}
func (cLogger *commonLogger) Tracef(format string, params ...interface{}) {
cLogger.traceWithCallDepth(loggerFuncCallDepth, newLogFormattedMessage(format, params))
}
func (cLogger *commonLogger) Debugf(format string, params ...interface{}) {
cLogger.debugWithCallDepth(loggerFuncCallDepth, newLogFormattedMessage(format, params))
}
func (cLogger *commonLogger) Infof(format string, params ...interface{}) {
cLogger.infoWithCallDepth(loggerFuncCallDepth, newLogFormattedMessage(format, params))
}
func (cLogger *commonLogger) Warnf(format string, params ...interface{}) error {
message := newLogFormattedMessage(format, params)
cLogger.warnWithCallDepth(loggerFuncCallDepth, message)
return errors.New(message.String())
}
func (cLogger *commonLogger) Errorf(format string, params ...interface{}) error {
message := newLogFormattedMessage(format, params)
cLogger.errorWithCallDepth(loggerFuncCallDepth, message)
return errors.New(message.String())
}
func (cLogger *commonLogger) Criticalf(format string, params ...interface{}) error {
message := newLogFormattedMessage(format, params)
cLogger.criticalWithCallDepth(loggerFuncCallDepth, message)
return errors.New(message.String())
}
func (cLogger *commonLogger) Trace(v ...interface{}) {
cLogger.traceWithCallDepth(loggerFuncCallDepth, newLogMessage(v))
}
func (cLogger *commonLogger) Debug(v ...interface{}) {
cLogger.debugWithCallDepth(loggerFuncCallDepth, newLogMessage(v))
}
func (cLogger *commonLogger) Info(v ...interface{}) {
cLogger.infoWithCallDepth(loggerFuncCallDepth, newLogMessage(v))
}
func (cLogger *commonLogger) Warn(v ...interface{}) error {
message := newLogMessage(v)
cLogger.warnWithCallDepth(loggerFuncCallDepth, message)
return errors.New(message.String())
}
func (cLogger *commonLogger) Error(v ...interface{}) error {
message := newLogMessage(v)
cLogger.errorWithCallDepth(loggerFuncCallDepth, message)
return errors.New(message.String())
}
func (cLogger *commonLogger) Critical(v ...interface{}) error {
message := newLogMessage(v)
cLogger.criticalWithCallDepth(loggerFuncCallDepth, message)
return errors.New(message.String())
}
func (cLogger *commonLogger) traceWithCallDepth(callDepth int, message fmt.Stringer) {
cLogger.log(TraceLvl, message, callDepth)
}
func (cLogger *commonLogger) debugWithCallDepth(callDepth int, message fmt.Stringer) {
cLogger.log(DebugLvl, message, callDepth)
}
func (cLogger *commonLogger) infoWithCallDepth(callDepth int, message fmt.Stringer) {
cLogger.log(InfoLvl, message, callDepth)
}
func (cLogger *commonLogger) warnWithCallDepth(callDepth int, message fmt.Stringer) {
cLogger.log(WarnLvl, message, callDepth)
}
func (cLogger *commonLogger) errorWithCallDepth(callDepth int, message fmt.Stringer) {
cLogger.log(ErrorLvl, message, callDepth)
}
func (cLogger *commonLogger) criticalWithCallDepth(callDepth int, message fmt.Stringer) {
cLogger.log(CriticalLvl, message, callDepth)
cLogger.innerLogger.Flush()
}
func (cLogger *commonLogger) Closed() bool {
cLogger.closedM.RLock()
defer cLogger.closedM.RUnlock()
return cLogger.closed
}
func (cLogger *commonLogger) fillUnusedLevels() {
for i := 0; i < len(cLogger.unusedLevels); i++ {
cLogger.unusedLevels[i] = true
}
cLogger.fillUnusedLevelsByContraint(cLogger.config.Constraints)
for _, exception := range cLogger.config.Exceptions {
cLogger.fillUnusedLevelsByContraint(exception)
}
}
func (cLogger *commonLogger) fillUnusedLevelsByContraint(constraint logLevelConstraints) {
for i := 0; i < len(cLogger.unusedLevels); i++ {
if constraint.IsAllowed(LogLevel(i)) {
cLogger.unusedLevels[i] = false
}
}
}
// stackCallDepth is used to indicate the call depth of 'log' func.
// This depth level is used in the runtime.Caller(...) call. See
// common_context.go -> specifyContext, extractCallerInfo for details.
func (cLogger *commonLogger) log(level LogLevel, message fmt.Stringer, stackCallDepth int) {
if cLogger.unusedLevels[level] {
return
}
cLogger.m.Lock()
defer cLogger.m.Unlock()
if cLogger.Closed() {
return
}
context, _ := specifyContext(stackCallDepth + cLogger.addStackDepth)
// Context errors are not reported because there are situations
// in which context errors are normal Seelog usage cases. For
// example in executables with stripped symbols.
// Error contexts are returned instead. See common_context.go.
/*if err != nil {
reportInternalError(err)
return
}*/
cLogger.innerLogger.innerLog(level, context, message)
}
func (cLogger *commonLogger) processLogMsg(level LogLevel, message fmt.Stringer, context LogContextInterface) {
defer func() {
if err := recover(); err != nil {
reportInternalError(fmt.Errorf("recovered from panic during message processing: %s", err))
}
}()
if cLogger.config.IsAllowed(level, context) {
cLogger.config.RootDispatcher.Dispatch(message.String(), level, context, reportInternalError)
}
}
func (cLogger *commonLogger) isAllowed(level LogLevel, context LogContextInterface) bool {
funcMap, ok := cLogger.contextCache[context.FullPath()]
if !ok {
funcMap = make(map[string]map[LogLevel]bool, 0)
cLogger.contextCache[context.FullPath()] = funcMap
}
levelMap, ok := funcMap[context.Func()]
if !ok {
levelMap = make(map[LogLevel]bool, 0)
funcMap[context.Func()] = levelMap
}
isAllowValue, ok := levelMap[level]
if !ok {
isAllowValue = cLogger.config.IsAllowed(level, context)
levelMap[level] = isAllowValue
}
return isAllowValue
}
type logMessage struct {
params []interface{}
}
type logFormattedMessage struct {
format string
params []interface{}
}
func newLogMessage(params []interface{}) fmt.Stringer {
message := new(logMessage)
message.params = params
return message
}
func newLogFormattedMessage(format string, params []interface{}) *logFormattedMessage {
message := new(logFormattedMessage)
message.params = params
message.format = format
return message
}
func (message *logMessage) String() string {
return fmt.Sprint(message.params...)
}
func (message *logFormattedMessage) String() string {
return fmt.Sprintf(message.format, message.params...)
}

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@ -0,0 +1,161 @@
// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"bufio"
"errors"
"fmt"
"io"
"sync"
"time"
)
// bufferedWriter stores data in memory and flushes it every flushPeriod or when buffer is full
type bufferedWriter struct {
flushPeriod time.Duration // data flushes interval (in microseconds)
bufferMutex *sync.Mutex // mutex for buffer operations syncronization
innerWriter io.Writer // inner writer
buffer *bufio.Writer // buffered wrapper for inner writer
bufferSize int // max size of data chunk in bytes
}
// newBufferedWriter creates a new buffered writer struct.
// bufferSize -- size of memory buffer in bytes
// flushPeriod -- period in which data flushes from memory buffer in milliseconds. 0 - turn off this functionality
func newBufferedWriter(innerWriter io.Writer, bufferSize int, flushPeriod time.Duration) (*bufferedWriter, error) {
if innerWriter == nil {
return nil, errors.New("argument is nil: innerWriter")
}
if flushPeriod < 0 {
return nil, fmt.Errorf("flushPeriod can not be less than 0. Got: %d", flushPeriod)
}
if bufferSize <= 0 {
return nil, fmt.Errorf("bufferSize can not be less or equal to 0. Got: %d", bufferSize)
}
buffer := bufio.NewWriterSize(innerWriter, bufferSize)
/*if err != nil {
return nil, err
}*/
newWriter := new(bufferedWriter)
newWriter.innerWriter = innerWriter
newWriter.buffer = buffer
newWriter.bufferSize = bufferSize
newWriter.flushPeriod = flushPeriod * 1e6
newWriter.bufferMutex = new(sync.Mutex)
if flushPeriod != 0 {
go newWriter.flushPeriodically()
}
return newWriter, nil
}
func (bufWriter *bufferedWriter) writeBigChunk(bytes []byte) (n int, err error) {
bufferedLen := bufWriter.buffer.Buffered()
n, err = bufWriter.flushInner()
if err != nil {
return
}
written, writeErr := bufWriter.innerWriter.Write(bytes)
return bufferedLen + written, writeErr
}
// Sends data to buffer manager. Waits until all buffers are full.
func (bufWriter *bufferedWriter) Write(bytes []byte) (n int, err error) {
bufWriter.bufferMutex.Lock()
defer bufWriter.bufferMutex.Unlock()
bytesLen := len(bytes)
if bytesLen > bufWriter.bufferSize {
return bufWriter.writeBigChunk(bytes)
}
if bytesLen > bufWriter.buffer.Available() {
n, err = bufWriter.flushInner()
if err != nil {
return
}
}
bufWriter.buffer.Write(bytes)
return len(bytes), nil
}
func (bufWriter *bufferedWriter) Close() error {
closer, ok := bufWriter.innerWriter.(io.Closer)
if ok {
return closer.Close()
}
return nil
}
func (bufWriter *bufferedWriter) Flush() {
bufWriter.bufferMutex.Lock()
defer bufWriter.bufferMutex.Unlock()
bufWriter.flushInner()
}
func (bufWriter *bufferedWriter) flushInner() (n int, err error) {
bufferedLen := bufWriter.buffer.Buffered()
flushErr := bufWriter.buffer.Flush()
return bufWriter.buffer.Buffered() - bufferedLen, flushErr
}
func (bufWriter *bufferedWriter) flushBuffer() {
bufWriter.bufferMutex.Lock()
defer bufWriter.bufferMutex.Unlock()
bufWriter.buffer.Flush()
}
func (bufWriter *bufferedWriter) flushPeriodically() {
if bufWriter.flushPeriod > 0 {
ticker := time.NewTicker(bufWriter.flushPeriod)
for {
<-ticker.C
bufWriter.flushBuffer()
}
}
}
func (bufWriter *bufferedWriter) String() string {
return fmt.Sprintf("bufferedWriter size: %d, flushPeriod: %d", bufWriter.bufferSize, bufWriter.flushPeriod)
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"testing"
)
func TestChunkWriteOnFilling(t *testing.T) {
writer, _ := newBytesVerifier(t)
bufferedWriter, err := newBufferedWriter(writer, 1024, 0)
if err != nil {
t.Fatalf("Unexpected buffered writer creation error: %s", err.Error())
}
bytes := make([]byte, 1000)
bufferedWriter.Write(bytes)
writer.ExpectBytes(bytes)
bufferedWriter.Write(bytes)
}
func TestFlushByTimePeriod(t *testing.T) {
writer, _ := newBytesVerifier(t)
bufferedWriter, err := newBufferedWriter(writer, 1024, 10)
if err != nil {
t.Fatalf("Unexpected buffered writer creation error: %s", err.Error())
}
bytes := []byte("Hello")
for i := 0; i < 2; i++ {
writer.ExpectBytes(bytes)
bufferedWriter.Write(bytes)
}
}
func TestBigMessageMustPassMemoryBuffer(t *testing.T) {
writer, _ := newBytesVerifier(t)
bufferedWriter, err := newBufferedWriter(writer, 1024, 0)
if err != nil {
t.Fatalf("Unexpected buffered writer creation error: %s", err.Error())
}
bytes := make([]byte, 5000)
for i := 0; i < len(bytes); i++ {
bytes[i] = uint8(i % 255)
}
writer.ExpectBytes(bytes)
bufferedWriter.Write(bytes)
}

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vendor/github.com/cihub/seelog/writers_connwriter.go generated vendored Normal file
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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"crypto/tls"
"fmt"
"io"
"net"
)
// connWriter is used to write to a stream-oriented network connection.
type connWriter struct {
innerWriter io.WriteCloser
reconnectOnMsg bool
reconnect bool
net string
addr string
useTLS bool
configTLS *tls.Config
}
// Creates writer to the address addr on the network netName.
// Connection will be opened on each write if reconnectOnMsg = true
func newConnWriter(netName string, addr string, reconnectOnMsg bool) *connWriter {
newWriter := new(connWriter)
newWriter.net = netName
newWriter.addr = addr
newWriter.reconnectOnMsg = reconnectOnMsg
return newWriter
}
// Creates a writer that uses SSL/TLS
func newTLSWriter(netName string, addr string, reconnectOnMsg bool, config *tls.Config) *connWriter {
newWriter := new(connWriter)
newWriter.net = netName
newWriter.addr = addr
newWriter.reconnectOnMsg = reconnectOnMsg
newWriter.useTLS = true
newWriter.configTLS = config
return newWriter
}
func (connWriter *connWriter) Close() error {
if connWriter.innerWriter == nil {
return nil
}
return connWriter.innerWriter.Close()
}
func (connWriter *connWriter) Write(bytes []byte) (n int, err error) {
if connWriter.neededConnectOnMsg() {
err = connWriter.connect()
if err != nil {
return 0, err
}
}
if connWriter.reconnectOnMsg {
defer connWriter.innerWriter.Close()
}
n, err = connWriter.innerWriter.Write(bytes)
if err != nil {
connWriter.reconnect = true
}
return
}
func (connWriter *connWriter) String() string {
return fmt.Sprintf("Conn writer: [%s, %s, %v]", connWriter.net, connWriter.addr, connWriter.reconnectOnMsg)
}
func (connWriter *connWriter) connect() error {
if connWriter.innerWriter != nil {
connWriter.innerWriter.Close()
connWriter.innerWriter = nil
}
if connWriter.useTLS {
conn, err := tls.Dial(connWriter.net, connWriter.addr, connWriter.configTLS)
if err != nil {
return err
}
connWriter.innerWriter = conn
return nil
}
conn, err := net.Dial(connWriter.net, connWriter.addr)
if err != nil {
return err
}
tcpConn, ok := conn.(*net.TCPConn)
if ok {
tcpConn.SetKeepAlive(true)
}
connWriter.innerWriter = conn
return nil
}
func (connWriter *connWriter) neededConnectOnMsg() bool {
if connWriter.reconnect {
connWriter.reconnect = false
return true
}
if connWriter.innerWriter == nil {
return true
}
return connWriter.reconnectOnMsg
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import "fmt"
// consoleWriter is used to write to console
type consoleWriter struct {
}
// Creates a new console writer. Returns error, if the console writer couldn't be created.
func newConsoleWriter() (writer *consoleWriter, err error) {
newWriter := new(consoleWriter)
return newWriter, nil
}
// Create folder and file on WriteLog/Write first call
func (console *consoleWriter) Write(bytes []byte) (int, error) {
return fmt.Print(string(bytes))
}
func (console *consoleWriter) String() string {
return "Console writer"
}

92
vendor/github.com/cihub/seelog/writers_filewriter.go generated vendored Normal file
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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"fmt"
"io"
"os"
"path/filepath"
)
// fileWriter is used to write to a file.
type fileWriter struct {
innerWriter io.WriteCloser
fileName string
}
// Creates a new file and a corresponding writer. Returns error, if the file couldn't be created.
func newFileWriter(fileName string) (writer *fileWriter, err error) {
newWriter := new(fileWriter)
newWriter.fileName = fileName
return newWriter, nil
}
func (fw *fileWriter) Close() error {
if fw.innerWriter != nil {
err := fw.innerWriter.Close()
if err != nil {
return err
}
fw.innerWriter = nil
}
return nil
}
// Create folder and file on WriteLog/Write first call
func (fw *fileWriter) Write(bytes []byte) (n int, err error) {
if fw.innerWriter == nil {
if err := fw.createFile(); err != nil {
return 0, err
}
}
return fw.innerWriter.Write(bytes)
}
func (fw *fileWriter) createFile() error {
folder, _ := filepath.Split(fw.fileName)
var err error
if 0 != len(folder) {
err = os.MkdirAll(folder, defaultDirectoryPermissions)
if err != nil {
return err
}
}
// If exists
fw.innerWriter, err = os.OpenFile(fw.fileName, os.O_WRONLY|os.O_APPEND|os.O_CREATE, defaultFilePermissions)
if err != nil {
return err
}
return nil
}
func (fw *fileWriter) String() string {
return fmt.Sprintf("File writer: %s", fw.fileName)
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"fmt"
"io"
"os"
"path/filepath"
"strings"
"testing"
)
const (
messageLen = 10
)
var bytesFileTest = []byte(strings.Repeat("A", messageLen))
func TestSimpleFileWriter(t *testing.T) {
t.Logf("Starting file writer tests")
newFileWriterTester(simplefileWriterTests, simplefileWriterGetter, t).test()
}
//===============================================================
func simplefileWriterGetter(testCase *fileWriterTestCase) (io.WriteCloser, error) {
return newFileWriter(testCase.fileName)
}
//===============================================================
type fileWriterTestCase struct {
files []string
fileName string
rollingType rollingType
fileSize int64
maxRolls int
datePattern string
writeCount int
resFiles []string
nameMode rollingNameMode
}
func createSimplefileWriterTestCase(fileName string, writeCount int) *fileWriterTestCase {
return &fileWriterTestCase{[]string{}, fileName, rollingTypeSize, 0, 0, "", writeCount, []string{fileName}, 0}
}
var simplefileWriterTests = []*fileWriterTestCase{
createSimplefileWriterTestCase("log.testlog", 1),
createSimplefileWriterTestCase("log.testlog", 50),
createSimplefileWriterTestCase(filepath.Join("dir", "log.testlog"), 50),
}
//===============================================================
type fileWriterTester struct {
testCases []*fileWriterTestCase
writerGetter func(*fileWriterTestCase) (io.WriteCloser, error)
t *testing.T
}
func newFileWriterTester(
testCases []*fileWriterTestCase,
writerGetter func(*fileWriterTestCase) (io.WriteCloser, error),
t *testing.T) *fileWriterTester {
return &fileWriterTester{testCases, writerGetter, t}
}
func isWriterTestFile(fn string) bool {
return strings.Contains(fn, ".testlog")
}
func cleanupWriterTest(t *testing.T) {
toDel, err := getDirFilePaths(".", isWriterTestFile, true)
if nil != err {
t.Fatal("Cannot list files in test directory!")
}
for _, p := range toDel {
if err = tryRemoveFile(p); nil != err {
t.Errorf("cannot remove file %s in test directory: %s", p, err.Error())
}
}
if err = os.RemoveAll("dir"); nil != err {
t.Errorf("cannot remove temp test directory: %s", err.Error())
}
}
func getWriterTestResultFiles() ([]string, error) {
var p []string
visit := func(path string, f os.FileInfo, err error) error {
if !f.IsDir() && isWriterTestFile(path) {
abs, err := filepath.Abs(path)
if err != nil {
return fmt.Errorf("filepath.Abs failed for %s", path)
}
p = append(p, abs)
}
return nil
}
err := filepath.Walk(".", visit)
if nil != err {
return nil, err
}
return p, nil
}
func (tester *fileWriterTester) testCase(testCase *fileWriterTestCase, testNum int) {
defer cleanupWriterTest(tester.t)
tester.t.Logf("Start test [%v]\n", testNum)
for _, filePath := range testCase.files {
dir, _ := filepath.Split(filePath)
var err error
if 0 != len(dir) {
err = os.MkdirAll(dir, defaultDirectoryPermissions)
if err != nil {
tester.t.Error(err)
return
}
}
fi, err := os.Create(filePath)
if err != nil {
tester.t.Error(err)
return
}
err = fi.Close()
if err != nil {
tester.t.Error(err)
return
}
}
fwc, err := tester.writerGetter(testCase)
if err != nil {
tester.t.Error(err)
return
}
defer fwc.Close()
tester.performWrite(fwc, testCase.writeCount)
files, err := getWriterTestResultFiles()
if err != nil {
tester.t.Error(err)
return
}
tester.checkRequiredFilesExist(testCase, files)
tester.checkJustRequiredFilesExist(testCase, files)
}
func (tester *fileWriterTester) test() {
for i, tc := range tester.testCases {
cleanupWriterTest(tester.t)
tester.testCase(tc, i)
}
}
func (tester *fileWriterTester) performWrite(fileWriter io.Writer, count int) {
for i := 0; i < count; i++ {
_, err := fileWriter.Write(bytesFileTest)
if err != nil {
tester.t.Error(err)
return
}
}
}
func (tester *fileWriterTester) checkRequiredFilesExist(testCase *fileWriterTestCase, files []string) {
var found bool
for _, expected := range testCase.resFiles {
found = false
exAbs, err := filepath.Abs(expected)
if err != nil {
tester.t.Errorf("filepath.Abs failed for %s", expected)
continue
}
for _, f := range files {
if af, e := filepath.Abs(f); e == nil {
tester.t.Log(af)
if exAbs == af {
found = true
break
}
} else {
tester.t.Errorf("filepath.Abs failed for %s", f)
}
}
if !found {
tester.t.Errorf("expected file: %s doesn't exist. Got %v\n", exAbs, files)
}
}
}
func (tester *fileWriterTester) checkJustRequiredFilesExist(testCase *fileWriterTestCase, files []string) {
for _, f := range files {
found := false
for _, expected := range testCase.resFiles {
exAbs, err := filepath.Abs(expected)
if err != nil {
tester.t.Errorf("filepath.Abs failed for %s", expected)
} else {
if exAbs == f {
found = true
break
}
}
}
if !found {
tester.t.Errorf("unexpected file: %v", f)
}
}
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"errors"
"fmt"
"io"
)
type formattedWriter struct {
writer io.Writer
formatter *formatter
}
func newFormattedWriter(writer io.Writer, formatter *formatter) (*formattedWriter, error) {
if formatter == nil {
return nil, errors.New("formatter can not be nil")
}
return &formattedWriter{writer, formatter}, nil
}
func (formattedWriter *formattedWriter) Write(message string, level LogLevel, context LogContextInterface) error {
str := formattedWriter.formatter.Format(message, level, context)
_, err := formattedWriter.writer.Write([]byte(str))
return err
}
func (formattedWriter *formattedWriter) String() string {
return fmt.Sprintf("writer: %s, format: %s", formattedWriter.writer, formattedWriter.formatter)
}
func (formattedWriter *formattedWriter) Writer() io.Writer {
return formattedWriter.writer
}
func (formattedWriter *formattedWriter) Format() *formatter {
return formattedWriter.formatter
}

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// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"testing"
)
func TestformattedWriter(t *testing.T) {
formatStr := "%Level %LEVEL %Msg"
message := "message"
var logLevel = LogLevel(TraceLvl)
bytesVerifier, err := newBytesVerifier(t)
if err != nil {
t.Error(err)
return
}
formatter, err := newFormatter(formatStr)
if err != nil {
t.Error(err)
return
}
writer, err := newFormattedWriter(bytesVerifier, formatter)
if err != nil {
t.Error(err)
return
}
context, err := currentContext()
if err != nil {
t.Error(err)
return
}
logMessage := formatter.Format(message, logLevel, context)
bytesVerifier.ExpectBytes([]byte(logMessage))
writer.Write(message, logLevel, context)
bytesVerifier.MustNotExpect()
}

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@ -0,0 +1,612 @@
// Copyright (c) 2013 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"fmt"
"io/ioutil"
"os"
"path/filepath"
"sort"
"strconv"
"strings"
"time"
)
// Common constants
const (
rollingLogHistoryDelimiter = "."
)
// Types of the rolling writer: roll by date, by time, etc.
type rollingType uint8
const (
rollingTypeSize = iota
rollingTypeTime
)
// Types of the rolled file naming mode: prefix, postfix, etc.
type rollingNameMode uint8
const (
rollingNameModePostfix = iota
rollingNameModePrefix
)
var rollingNameModesStringRepresentation = map[rollingNameMode]string{
rollingNameModePostfix: "postfix",
rollingNameModePrefix: "prefix",
}
func rollingNameModeFromString(rollingNameStr string) (rollingNameMode, bool) {
for tp, tpStr := range rollingNameModesStringRepresentation {
if tpStr == rollingNameStr {
return tp, true
}
}
return 0, false
}
type rollingIntervalType uint8
const (
rollingIntervalAny = iota
rollingIntervalDaily
)
var rollingInvervalTypesStringRepresentation = map[rollingIntervalType]string{
rollingIntervalDaily: "daily",
}
func rollingIntervalTypeFromString(rollingTypeStr string) (rollingIntervalType, bool) {
for tp, tpStr := range rollingInvervalTypesStringRepresentation {
if tpStr == rollingTypeStr {
return tp, true
}
}
return 0, false
}
var rollingTypesStringRepresentation = map[rollingType]string{
rollingTypeSize: "size",
rollingTypeTime: "date",
}
func rollingTypeFromString(rollingTypeStr string) (rollingType, bool) {
for tp, tpStr := range rollingTypesStringRepresentation {
if tpStr == rollingTypeStr {
return tp, true
}
}
return 0, false
}
// Old logs archivation type.
type rollingArchiveType uint8
const (
rollingArchiveNone = iota
rollingArchiveZip
)
var rollingArchiveTypesStringRepresentation = map[rollingArchiveType]string{
rollingArchiveNone: "none",
rollingArchiveZip: "zip",
}
func rollingArchiveTypeFromString(rollingArchiveTypeStr string) (rollingArchiveType, bool) {
for tp, tpStr := range rollingArchiveTypesStringRepresentation {
if tpStr == rollingArchiveTypeStr {
return tp, true
}
}
return 0, false
}
// Default names for different archivation types
var rollingArchiveTypesDefaultNames = map[rollingArchiveType]string{
rollingArchiveZip: "log.zip",
}
// rollerVirtual is an interface that represents all virtual funcs that are
// called in different rolling writer subtypes.
type rollerVirtual interface {
needsToRoll() (bool, error) // Returns true if needs to switch to another file.
isFileRollNameValid(rname string) bool // Returns true if logger roll file name (postfix/prefix/etc.) is ok.
sortFileRollNamesAsc(fs []string) ([]string, error) // Sorts logger roll file names in ascending order of their creation by logger.
// Creates a new froll history file using the contents of current file and special filename of the latest roll (prefix/ postfix).
// If lastRollName is empty (""), then it means that there is no latest roll (current is the first one)
getNewHistoryRollFileName(lastRollName string) string
getCurrentModifiedFileName(originalFileName string) string // Returns filename modified according to specific logger rules
}
// rollingFileWriter writes received messages to a file, until time interval passes
// or file exceeds a specified limit. After that the current log file is renamed
// and writer starts to log into a new file. You can set a limit for such renamed
// files count, if you want, and then the rolling writer would delete older ones when
// the files count exceed the specified limit.
type rollingFileWriter struct {
fileName string // current file name. May differ from original in date rolling loggers
originalFileName string // original one
currentDirPath string
currentFile *os.File
currentFileSize int64
rollingType rollingType // Rolling mode (Files roll by size/date/...)
archiveType rollingArchiveType
archivePath string
maxRolls int
nameMode rollingNameMode
self rollerVirtual // Used for virtual calls
}
func newRollingFileWriter(fpath string, rtype rollingType, atype rollingArchiveType, apath string, maxr int, namemode rollingNameMode) (*rollingFileWriter, error) {
rw := new(rollingFileWriter)
rw.currentDirPath, rw.fileName = filepath.Split(fpath)
if len(rw.currentDirPath) == 0 {
rw.currentDirPath = "."
}
rw.originalFileName = rw.fileName
rw.rollingType = rtype
rw.archiveType = atype
rw.archivePath = apath
rw.nameMode = namemode
rw.maxRolls = maxr
return rw, nil
}
func (rw *rollingFileWriter) hasRollName(file string) bool {
switch rw.nameMode {
case rollingNameModePostfix:
rname := rw.originalFileName + rollingLogHistoryDelimiter
return strings.HasPrefix(file, rname)
case rollingNameModePrefix:
rname := rollingLogHistoryDelimiter + rw.originalFileName
return strings.HasSuffix(file, rname)
}
return false
}
func (rw *rollingFileWriter) createFullFileName(originalName, rollname string) string {
switch rw.nameMode {
case rollingNameModePostfix:
return originalName + rollingLogHistoryDelimiter + rollname
case rollingNameModePrefix:
return rollname + rollingLogHistoryDelimiter + originalName
}
return ""
}
func (rw *rollingFileWriter) getSortedLogHistory() ([]string, error) {
files, err := getDirFilePaths(rw.currentDirPath, nil, true)
if err != nil {
return nil, err
}
var validRollNames []string
for _, file := range files {
if file != rw.fileName && rw.hasRollName(file) {
rname := rw.getFileRollName(file)
if rw.self.isFileRollNameValid(rname) {
validRollNames = append(validRollNames, rname)
}
}
}
sortedTails, err := rw.self.sortFileRollNamesAsc(validRollNames)
if err != nil {
return nil, err
}
validSortedFiles := make([]string, len(sortedTails))
for i, v := range sortedTails {
validSortedFiles[i] = rw.createFullFileName(rw.originalFileName, v)
}
return validSortedFiles, nil
}
func (rw *rollingFileWriter) createFileAndFolderIfNeeded() error {
var err error
if len(rw.currentDirPath) != 0 {
err = os.MkdirAll(rw.currentDirPath, defaultDirectoryPermissions)
if err != nil {
return err
}
}
rw.fileName = rw.self.getCurrentModifiedFileName(rw.originalFileName)
filePath := filepath.Join(rw.currentDirPath, rw.fileName)
// If exists
stat, err := os.Lstat(filePath)
if err == nil {
rw.currentFile, err = os.OpenFile(filePath, os.O_WRONLY|os.O_APPEND, defaultFilePermissions)
stat, err = os.Lstat(filePath)
if err != nil {
return err
}
rw.currentFileSize = stat.Size()
} else {
rw.currentFile, err = os.Create(filePath)
rw.currentFileSize = 0
}
if err != nil {
return err
}
return nil
}
func (rw *rollingFileWriter) deleteOldRolls(history []string) error {
if rw.maxRolls <= 0 {
return nil
}
rollsToDelete := len(history) - rw.maxRolls
if rollsToDelete <= 0 {
return nil
}
switch rw.archiveType {
case rollingArchiveZip:
var files map[string][]byte
// If archive exists
_, err := os.Lstat(rw.archivePath)
if nil == err {
// Extract files and content from it
files, err = unzip(rw.archivePath)
if err != nil {
return err
}
// Remove the original file
err = tryRemoveFile(rw.archivePath)
if err != nil {
return err
}
} else {
files = make(map[string][]byte)
}
// Add files to the existing files map, filled above
for i := 0; i < rollsToDelete; i++ {
rollPath := filepath.Join(rw.currentDirPath, history[i])
bts, err := ioutil.ReadFile(rollPath)
if err != nil {
return err
}
files[rollPath] = bts
}
// Put the final file set to zip file.
if err = createZip(rw.archivePath, files); err != nil {
return err
}
}
var err error
// In all cases (archive files or not) the files should be deleted.
for i := 0; i < rollsToDelete; i++ {
// Try best to delete files without breaking the loop.
if err = tryRemoveFile(filepath.Join(rw.currentDirPath, history[i])); err != nil {
reportInternalError(err)
}
}
return nil
}
func (rw *rollingFileWriter) getFileRollName(fileName string) string {
switch rw.nameMode {
case rollingNameModePostfix:
return fileName[len(rw.originalFileName+rollingLogHistoryDelimiter):]
case rollingNameModePrefix:
return fileName[:len(fileName)-len(rw.originalFileName+rollingLogHistoryDelimiter)]
}
return ""
}
func (rw *rollingFileWriter) Write(bytes []byte) (n int, err error) {
if rw.currentFile == nil {
err := rw.createFileAndFolderIfNeeded()
if err != nil {
return 0, err
}
}
// needs to roll if:
// * file roller max file size exceeded OR
// * time roller interval passed
nr, err := rw.self.needsToRoll()
if err != nil {
return 0, err
}
if nr {
// First, close current file.
err = rw.currentFile.Close()
if err != nil {
return 0, err
}
// Current history of all previous log files.
// For file roller it may be like this:
// * ...
// * file.log.4
// * file.log.5
// * file.log.6
//
// For date roller it may look like this:
// * ...
// * file.log.11.Aug.13
// * file.log.15.Aug.13
// * file.log.16.Aug.13
// Sorted log history does NOT include current file.
history, err := rw.getSortedLogHistory()
if err != nil {
return 0, err
}
// Renames current file to create a new roll history entry
// For file roller it may be like this:
// * ...
// * file.log.4
// * file.log.5
// * file.log.6
// n file.log.7 <---- RENAMED (from file.log)
// Time rollers that doesn't modify file names (e.g. 'date' roller) skip this logic.
var newHistoryName string
var newRollMarkerName string
if len(history) > 0 {
// Create new rname name using last history file name
newRollMarkerName = rw.self.getNewHistoryRollFileName(rw.getFileRollName(history[len(history)-1]))
} else {
// Create first rname name
newRollMarkerName = rw.self.getNewHistoryRollFileName("")
}
if len(newRollMarkerName) != 0 {
newHistoryName = rw.createFullFileName(rw.fileName, newRollMarkerName)
} else {
newHistoryName = rw.fileName
}
if newHistoryName != rw.fileName {
err = os.Rename(filepath.Join(rw.currentDirPath, rw.fileName), filepath.Join(rw.currentDirPath, newHistoryName))
if err != nil {
return 0, err
}
}
// Finally, add the newly added history file to the history archive
// and, if after that the archive exceeds the allowed max limit, older rolls
// must the removed/archived.
history = append(history, newHistoryName)
if len(history) > rw.maxRolls {
err = rw.deleteOldRolls(history)
if err != nil {
return 0, err
}
}
err = rw.createFileAndFolderIfNeeded()
if err != nil {
return 0, err
}
}
rw.currentFileSize += int64(len(bytes))
return rw.currentFile.Write(bytes)
}
func (rw *rollingFileWriter) Close() error {
if rw.currentFile != nil {
e := rw.currentFile.Close()
if e != nil {
return e
}
rw.currentFile = nil
}
return nil
}
// =============================================================================================
// Different types of rolling writers
// =============================================================================================
// --------------------------------------------------
// Rolling writer by SIZE
// --------------------------------------------------
// rollingFileWriterSize performs roll when file exceeds a specified limit.
type rollingFileWriterSize struct {
*rollingFileWriter
maxFileSize int64
}
func newRollingFileWriterSize(fpath string, atype rollingArchiveType, apath string, maxSize int64, maxRolls int, namemode rollingNameMode) (*rollingFileWriterSize, error) {
rw, err := newRollingFileWriter(fpath, rollingTypeSize, atype, apath, maxRolls, namemode)
if err != nil {
return nil, err
}
rws := &rollingFileWriterSize{rw, maxSize}
rws.self = rws
return rws, nil
}
func (rws *rollingFileWriterSize) needsToRoll() (bool, error) {
return rws.currentFileSize >= rws.maxFileSize, nil
}
func (rws *rollingFileWriterSize) isFileRollNameValid(rname string) bool {
if len(rname) == 0 {
return false
}
_, err := strconv.Atoi(rname)
return err == nil
}
type rollSizeFileTailsSlice []string
func (p rollSizeFileTailsSlice) Len() int { return len(p) }
func (p rollSizeFileTailsSlice) Less(i, j int) bool {
v1, _ := strconv.Atoi(p[i])
v2, _ := strconv.Atoi(p[j])
return v1 < v2
}
func (p rollSizeFileTailsSlice) Swap(i, j int) { p[i], p[j] = p[j], p[i] }
func (rws *rollingFileWriterSize) sortFileRollNamesAsc(fs []string) ([]string, error) {
ss := rollSizeFileTailsSlice(fs)
sort.Sort(ss)
return ss, nil
}
func (rws *rollingFileWriterSize) getNewHistoryRollFileName(lastRollName string) string {
v := 0
if len(lastRollName) != 0 {
v, _ = strconv.Atoi(lastRollName)
}
return fmt.Sprintf("%d", v+1)
}
func (rws *rollingFileWriterSize) getCurrentModifiedFileName(originalFileName string) string {
return originalFileName
}
func (rws *rollingFileWriterSize) String() string {
return fmt.Sprintf("Rolling file writer (By SIZE): filename: %s, archive: %s, archivefile: %s, maxFileSize: %v, maxRolls: %v",
rws.fileName,
rollingArchiveTypesStringRepresentation[rws.archiveType],
rws.archivePath,
rws.maxFileSize,
rws.maxRolls)
}
// --------------------------------------------------
// Rolling writer by TIME
// --------------------------------------------------
// rollingFileWriterTime performs roll when a specified time interval has passed.
type rollingFileWriterTime struct {
*rollingFileWriter
timePattern string
interval rollingIntervalType
currentTimeFileName string
}
func newRollingFileWriterTime(fpath string, atype rollingArchiveType, apath string, maxr int,
timePattern string, interval rollingIntervalType, namemode rollingNameMode) (*rollingFileWriterTime, error) {
rw, err := newRollingFileWriter(fpath, rollingTypeTime, atype, apath, maxr, namemode)
if err != nil {
return nil, err
}
rws := &rollingFileWriterTime{rw, timePattern, interval, ""}
rws.self = rws
return rws, nil
}
func (rwt *rollingFileWriterTime) needsToRoll() (bool, error) {
switch rwt.nameMode {
case rollingNameModePostfix:
if rwt.originalFileName+rollingLogHistoryDelimiter+time.Now().Format(rwt.timePattern) == rwt.fileName {
return false, nil
}
case rollingNameModePrefix:
if time.Now().Format(rwt.timePattern)+rollingLogHistoryDelimiter+rwt.originalFileName == rwt.fileName {
return false, nil
}
}
if rwt.interval == rollingIntervalAny {
return true, nil
}
tprev, err := time.ParseInLocation(rwt.timePattern, rwt.getFileRollName(rwt.fileName), time.Local)
if err != nil {
return false, err
}
diff := time.Now().Sub(tprev)
switch rwt.interval {
case rollingIntervalDaily:
return diff >= 24*time.Hour, nil
}
return false, fmt.Errorf("unknown interval type: %d", rwt.interval)
}
func (rwt *rollingFileWriterTime) isFileRollNameValid(rname string) bool {
if len(rname) == 0 {
return false
}
_, err := time.ParseInLocation(rwt.timePattern, rname, time.Local)
return err == nil
}
type rollTimeFileTailsSlice struct {
data []string
pattern string
}
func (p rollTimeFileTailsSlice) Len() int { return len(p.data) }
func (p rollTimeFileTailsSlice) Less(i, j int) bool {
t1, _ := time.ParseInLocation(p.pattern, p.data[i], time.Local)
t2, _ := time.ParseInLocation(p.pattern, p.data[j], time.Local)
return t1.Before(t2)
}
func (p rollTimeFileTailsSlice) Swap(i, j int) { p.data[i], p.data[j] = p.data[j], p.data[i] }
func (rwt *rollingFileWriterTime) sortFileRollNamesAsc(fs []string) ([]string, error) {
ss := rollTimeFileTailsSlice{data: fs, pattern: rwt.timePattern}
sort.Sort(ss)
return ss.data, nil
}
func (rwt *rollingFileWriterTime) getNewHistoryRollFileName(lastRollName string) string {
return ""
}
func (rwt *rollingFileWriterTime) getCurrentModifiedFileName(originalFileName string) string {
switch rwt.nameMode {
case rollingNameModePostfix:
return originalFileName + rollingLogHistoryDelimiter + time.Now().Format(rwt.timePattern)
case rollingNameModePrefix:
return time.Now().Format(rwt.timePattern) + rollingLogHistoryDelimiter + originalFileName
}
return ""
}
func (rwt *rollingFileWriterTime) String() string {
return fmt.Sprintf("Rolling file writer (By TIME): filename: %s, archive: %s, archivefile: %s, maxInterval: %v, pattern: %s, maxRolls: %v",
rwt.fileName,
rollingArchiveTypesStringRepresentation[rwt.archiveType],
rwt.archivePath,
rwt.interval,
rwt.timePattern,
rwt.maxRolls)
}

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@ -0,0 +1,99 @@
// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"fmt"
"io"
"testing"
)
// fileWriterTestCase is declared in writers_filewriter_test.go
func createRollingSizeFileWriterTestCase(
files []string,
fileName string,
fileSize int64,
maxRolls int,
writeCount int,
resFiles []string,
nameMode rollingNameMode) *fileWriterTestCase {
return &fileWriterTestCase{files, fileName, rollingTypeSize, fileSize, maxRolls, "", writeCount, resFiles, nameMode}
}
func createRollingDatefileWriterTestCase(
files []string,
fileName string,
datePattern string,
writeCount int,
resFiles []string,
nameMode rollingNameMode) *fileWriterTestCase {
return &fileWriterTestCase{files, fileName, rollingTypeTime, 0, 0, datePattern, writeCount, resFiles, nameMode}
}
func TestRollingFileWriter(t *testing.T) {
t.Logf("Starting rolling file writer tests")
newFileWriterTester(rollingfileWriterTests, rollingFileWriterGetter, t).test()
}
//===============================================================
func rollingFileWriterGetter(testCase *fileWriterTestCase) (io.WriteCloser, error) {
if testCase.rollingType == rollingTypeSize {
return newRollingFileWriterSize(testCase.fileName, rollingArchiveNone, "", testCase.fileSize, testCase.maxRolls, testCase.nameMode)
} else if testCase.rollingType == rollingTypeTime {
return newRollingFileWriterTime(testCase.fileName, rollingArchiveNone, "", -1, testCase.datePattern, rollingIntervalDaily, testCase.nameMode)
}
return nil, fmt.Errorf("incorrect rollingType")
}
//===============================================================
var rollingfileWriterTests = []*fileWriterTestCase{
createRollingSizeFileWriterTestCase([]string{}, "log.testlog", 10, 10, 1, []string{"log.testlog"}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{}, "log.testlog", 10, 10, 2, []string{"log.testlog", "log.testlog.1"}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{"1.log.testlog"}, "log.testlog", 10, 10, 2, []string{"log.testlog", "1.log.testlog", "2.log.testlog"}, rollingNameModePrefix),
createRollingSizeFileWriterTestCase([]string{"log.testlog.1"}, "log.testlog", 10, 1, 2, []string{"log.testlog", "log.testlog.2"}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{}, "log.testlog", 10, 1, 2, []string{"log.testlog", "log.testlog.1"}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{"log.testlog.9"}, "log.testlog", 10, 1, 2, []string{"log.testlog", "log.testlog.10"}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{"log.testlog.a", "log.testlog.1b"}, "log.testlog", 10, 1, 2, []string{"log.testlog", "log.testlog.1", "log.testlog.a", "log.testlog.1b"}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{}, `dir/log.testlog`, 10, 10, 1, []string{`dir/log.testlog`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{}, `dir/log.testlog`, 10, 10, 2, []string{`dir/log.testlog`, `dir/1.log.testlog`}, rollingNameModePrefix),
createRollingSizeFileWriterTestCase([]string{`dir/dir/log.testlog.1`}, `dir/dir/log.testlog`, 10, 10, 2, []string{`dir/dir/log.testlog`, `dir/dir/log.testlog.1`, `dir/dir/log.testlog.2`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{`dir/dir/dir/log.testlog.1`}, `dir/dir/dir/log.testlog`, 10, 1, 2, []string{`dir/dir/dir/log.testlog`, `dir/dir/dir/log.testlog.2`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{}, `./log.testlog`, 10, 1, 2, []string{`log.testlog`, `log.testlog.1`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{`././././log.testlog.9`}, `log.testlog`, 10, 1, 2, []string{`log.testlog`, `log.testlog.10`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{"dir/dir/log.testlog.a", "dir/dir/log.testlog.1b"}, "dir/dir/log.testlog", 10, 1, 2, []string{"dir/dir/log.testlog", "dir/dir/log.testlog.1", "dir/dir/log.testlog.a", "dir/dir/log.testlog.1b"}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{}, `././dir/log.testlog`, 10, 10, 1, []string{`dir/log.testlog`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{}, `././dir/log.testlog`, 10, 10, 2, []string{`dir/log.testlog`, `dir/log.testlog.1`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{`././dir/dir/log.testlog.1`}, `dir/dir/log.testlog`, 10, 10, 2, []string{`dir/dir/log.testlog`, `dir/dir/log.testlog.1`, `dir/dir/log.testlog.2`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{`././dir/dir/dir/log.testlog.1`}, `dir/dir/dir/log.testlog`, 10, 1, 2, []string{`dir/dir/dir/log.testlog`, `dir/dir/dir/log.testlog.2`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{}, `././log.testlog`, 10, 1, 2, []string{`log.testlog`, `log.testlog.1`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{`././././log.testlog.9`}, `log.testlog`, 10, 1, 2, []string{`log.testlog`, `log.testlog.10`}, rollingNameModePostfix),
createRollingSizeFileWriterTestCase([]string{"././dir/dir/log.testlog.a", "././dir/dir/log.testlog.1b"}, "dir/dir/log.testlog", 10, 1, 2, []string{"dir/dir/log.testlog", "dir/dir/log.testlog.1", "dir/dir/log.testlog.a", "dir/dir/log.testlog.1b"}, rollingNameModePostfix),
// ====================
}

214
vendor/github.com/cihub/seelog/writers_smtpwriter.go generated vendored Normal file
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@ -0,0 +1,214 @@
// Copyright (c) 2012 - Cloud Instruments Co., Ltd.
//
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are met:
//
// 1. Redistributions of source code must retain the above copyright notice, this
// list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation
// and/or other materials provided with the distribution.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
package seelog
import (
"crypto/tls"
"crypto/x509"
"errors"
"fmt"
"io/ioutil"
"net/smtp"
"path/filepath"
"strings"
)
const (
// Default subject phrase for sending emails.
DefaultSubjectPhrase = "Diagnostic message from server: "
// Message subject pattern composed according to RFC 5321.
rfc5321SubjectPattern = "From: %s <%s>\nSubject: %s\n\n"
)
// smtpWriter is used to send emails via given SMTP-server.
type smtpWriter struct {
auth smtp.Auth
hostName string
hostPort string
hostNameWithPort string
senderAddress string
senderName string
recipientAddresses []string
caCertDirPaths []string
mailHeaders []string
subject string
}
// newSMTPWriter returns a new SMTP-writer.
func newSMTPWriter(sa, sn string, ras []string, hn, hp, un, pwd string, cacdps []string, subj string, headers []string) *smtpWriter {
return &smtpWriter{
auth: smtp.PlainAuth("", un, pwd, hn),
hostName: hn,
hostPort: hp,
hostNameWithPort: fmt.Sprintf("%s:%s", hn, hp),
senderAddress: sa,
senderName: sn,
recipientAddresses: ras,
caCertDirPaths: cacdps,
subject: subj,
mailHeaders: headers,
}
}
func prepareMessage(senderAddr, senderName, subject string, body []byte, headers []string) []byte {
headerLines := fmt.Sprintf(rfc5321SubjectPattern, senderName, senderAddr, subject)
// Build header lines if configured.
if headers != nil && len(headers) > 0 {
headerLines += strings.Join(headers, "\n")
headerLines += "\n"
}
return append([]byte(headerLines), body...)
}
// getTLSConfig gets paths of PEM files with certificates,
// host server name and tries to create an appropriate TLS.Config.
func getTLSConfig(pemFileDirPaths []string, hostName string) (config *tls.Config, err error) {
if pemFileDirPaths == nil || len(pemFileDirPaths) == 0 {
err = errors.New("invalid PEM file paths")
return
}
pemEncodedContent := []byte{}
var (
e error
bytes []byte
)
// Create a file-filter-by-extension, set aside non-pem files.
pemFilePathFilter := func(fp string) bool {
if filepath.Ext(fp) == ".pem" {
return true
}
return false
}
for _, pemFileDirPath := range pemFileDirPaths {
pemFilePaths, err := getDirFilePaths(pemFileDirPath, pemFilePathFilter, false)
if err != nil {
return nil, err
}
// Put together all the PEM files to decode them as a whole byte slice.
for _, pfp := range pemFilePaths {
if bytes, e = ioutil.ReadFile(pfp); e == nil {
pemEncodedContent = append(pemEncodedContent, bytes...)
} else {
return nil, fmt.Errorf("cannot read file: %s: %s", pfp, e.Error())
}
}
}
config = &tls.Config{RootCAs: x509.NewCertPool(), ServerName: hostName}
isAppended := config.RootCAs.AppendCertsFromPEM(pemEncodedContent)
if !isAppended {
// Extract this into a separate error.
err = errors.New("invalid PEM content")
return
}
return
}
// SendMail accepts TLS configuration, connects to the server at addr,
// switches to TLS if possible, authenticates with mechanism a if possible,
// and then sends an email from address from, to addresses to, with message msg.
func sendMailWithTLSConfig(config *tls.Config, addr string, a smtp.Auth, from string, to []string, msg []byte) error {
c, err := smtp.Dial(addr)
if err != nil {
return err
}
// Check if the server supports STARTTLS extension.
if ok, _ := c.Extension("STARTTLS"); ok {
if err = c.StartTLS(config); err != nil {
return err
}
}
// Check if the server supports AUTH extension and use given smtp.Auth.
if a != nil {
if isSupported, _ := c.Extension("AUTH"); isSupported {
if err = c.Auth(a); err != nil {
return err
}
}
}
// Portion of code from the official smtp.SendMail function,
// see http://golang.org/src/pkg/net/smtp/smtp.go.
if err = c.Mail(from); err != nil {
return err
}
for _, addr := range to {
if err = c.Rcpt(addr); err != nil {
return err
}
}
w, err := c.Data()
if err != nil {
return err
}
_, err = w.Write(msg)
if err != nil {
return err
}
err = w.Close()
if err != nil {
return err
}
return c.Quit()
}
// Write pushes a text message properly composed according to RFC 5321
// to a post server, which sends it to the recipients.
func (smtpw *smtpWriter) Write(data []byte) (int, error) {
var err error
if smtpw.caCertDirPaths == nil {
err = smtp.SendMail(
smtpw.hostNameWithPort,
smtpw.auth,
smtpw.senderAddress,
smtpw.recipientAddresses,
prepareMessage(smtpw.senderAddress, smtpw.senderName, smtpw.subject, data, smtpw.mailHeaders),
)
} else {
config, e := getTLSConfig(smtpw.caCertDirPaths, smtpw.hostName)
if e != nil {
return 0, e
}
err = sendMailWithTLSConfig(
config,
smtpw.hostNameWithPort,
smtpw.auth,
smtpw.senderAddress,
smtpw.recipientAddresses,
prepareMessage(smtpw.senderAddress, smtpw.senderName, smtpw.subject, data, smtpw.mailHeaders),
)
}
if err != nil {
return 0, err
}
return len(data), nil
}
// Close closes down SMTP-connection.
func (smtpw *smtpWriter) Close() error {
// Do nothing as Write method opens and closes connection automatically.
return nil
}

23
vendor/github.com/coreos/go-etcd/etcd/add_child.go generated vendored Normal file
View file

@ -0,0 +1,23 @@
package etcd
// Add a new directory with a random etcd-generated key under the given path.
func (c *Client) AddChildDir(key string, ttl uint64) (*Response, error) {
raw, err := c.post(key, "", ttl)
if err != nil {
return nil, err
}
return raw.Unmarshal()
}
// Add a new file with a random etcd-generated key under the given path.
func (c *Client) AddChild(key string, value string, ttl uint64) (*Response, error) {
raw, err := c.post(key, value, ttl)
if err != nil {
return nil, err
}
return raw.Unmarshal()
}

View file

@ -0,0 +1,73 @@
package etcd
import "testing"
func TestAddChild(t *testing.T) {
c := NewClient(nil)
defer func() {
c.Delete("fooDir", true)
c.Delete("nonexistentDir", true)
}()
c.CreateDir("fooDir", 5)
_, err := c.AddChild("fooDir", "v0", 5)
if err != nil {
t.Fatal(err)
}
_, err = c.AddChild("fooDir", "v1", 5)
if err != nil {
t.Fatal(err)
}
resp, err := c.Get("fooDir", true, false)
// The child with v0 should proceed the child with v1 because it's added
// earlier, so it should have a lower key.
if !(len(resp.Node.Nodes) == 2 && (resp.Node.Nodes[0].Value == "v0" && resp.Node.Nodes[1].Value == "v1")) {
t.Fatalf("AddChild 1 failed. There should be two chlidren whose values are v0 and v1, respectively."+
" The response was: %#v", resp)
}
// Creating a child under a nonexistent directory should succeed.
// The directory should be created.
resp, err = c.AddChild("nonexistentDir", "foo", 5)
if err != nil {
t.Fatal(err)
}
}
func TestAddChildDir(t *testing.T) {
c := NewClient(nil)
defer func() {
c.Delete("fooDir", true)
c.Delete("nonexistentDir", true)
}()
c.CreateDir("fooDir", 5)
_, err := c.AddChildDir("fooDir", 5)
if err != nil {
t.Fatal(err)
}
_, err = c.AddChildDir("fooDir", 5)
if err != nil {
t.Fatal(err)
}
resp, err := c.Get("fooDir", true, false)
// The child with v0 should proceed the child with v1 because it's added
// earlier, so it should have a lower key.
if !(len(resp.Node.Nodes) == 2 && (len(resp.Node.Nodes[0].Nodes) == 0 && len(resp.Node.Nodes[1].Nodes) == 0)) {
t.Fatalf("AddChildDir 1 failed. There should be two chlidren whose values are v0 and v1, respectively."+
" The response was: %#v", resp)
}
// Creating a child under a nonexistent directory should succeed.
// The directory should be created.
resp, err = c.AddChildDir("nonexistentDir", 5)
if err != nil {
t.Fatal(err)
}
}

429
vendor/github.com/coreos/go-etcd/etcd/client.go generated vendored Normal file
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@ -0,0 +1,429 @@
package etcd
import (
"crypto/tls"
"crypto/x509"
"encoding/json"
"errors"
"io"
"io/ioutil"
"net"
"net/http"
"net/url"
"os"
"path"
"time"
)
// See SetConsistency for how to use these constants.
const (
// Using strings rather than iota because the consistency level
// could be persisted to disk, so it'd be better to use
// human-readable values.
STRONG_CONSISTENCY = "STRONG"
WEAK_CONSISTENCY = "WEAK"
)
const (
defaultBufferSize = 10
)
type Config struct {
CertFile string `json:"certFile"`
KeyFile string `json:"keyFile"`
CaCertFile []string `json:"caCertFiles"`
Timeout time.Duration `json:"timeout"`
Consistency string `json: "consistency"`
}
type Client struct {
config Config `json:"config"`
cluster *Cluster `json:"cluster"`
httpClient *http.Client
persistence io.Writer
cURLch chan string
// CheckRetry can be used to control the policy for failed requests
// and modify the cluster if needed.
// The client calls it before sending requests again, and
// stops retrying if CheckRetry returns some error. The cases that
// this function needs to handle include no response and unexpected
// http status code of response.
// If CheckRetry is nil, client will call the default one
// `DefaultCheckRetry`.
// Argument cluster is the etcd.Cluster object that these requests have been made on.
// Argument reqs is all of the http.Requests that have been made so far.
// Argument resps is all of the http.Responses from these requests.
// Argument err is the reason of the failure.
CheckRetry func(cluster *Cluster, reqs []http.Request,
resps []http.Response, err error) error
}
// NewClient create a basic client that is configured to be used
// with the given machine list.
func NewClient(machines []string) *Client {
config := Config{
// default timeout is one second
Timeout: time.Second,
// default consistency level is STRONG
Consistency: STRONG_CONSISTENCY,
}
client := &Client{
cluster: NewCluster(machines),
config: config,
}
client.initHTTPClient()
client.saveConfig()
return client
}
// NewTLSClient create a basic client with TLS configuration
func NewTLSClient(machines []string, cert, key, caCert string) (*Client, error) {
// overwrite the default machine to use https
if len(machines) == 0 {
machines = []string{"https://127.0.0.1:4001"}
}
config := Config{
// default timeout is one second
Timeout: time.Second,
// default consistency level is STRONG
Consistency: STRONG_CONSISTENCY,
CertFile: cert,
KeyFile: key,
CaCertFile: make([]string, 0),
}
client := &Client{
cluster: NewCluster(machines),
config: config,
}
err := client.initHTTPSClient(cert, key)
if err != nil {
return nil, err
}
err = client.AddRootCA(caCert)
client.saveConfig()
return client, nil
}
// NewClientFromFile creates a client from a given file path.
// The given file is expected to use the JSON format.
func NewClientFromFile(fpath string) (*Client, error) {
fi, err := os.Open(fpath)
if err != nil {
return nil, err
}
defer func() {
if err := fi.Close(); err != nil {
panic(err)
}
}()
return NewClientFromReader(fi)
}
// NewClientFromReader creates a Client configured from a given reader.
// The configuration is expected to use the JSON format.
func NewClientFromReader(reader io.Reader) (*Client, error) {
c := new(Client)
b, err := ioutil.ReadAll(reader)
if err != nil {
return nil, err
}
err = json.Unmarshal(b, c)
if err != nil {
return nil, err
}
if c.config.CertFile == "" {
c.initHTTPClient()
} else {
err = c.initHTTPSClient(c.config.CertFile, c.config.KeyFile)
}
if err != nil {
return nil, err
}
for _, caCert := range c.config.CaCertFile {
if err := c.AddRootCA(caCert); err != nil {
return nil, err
}
}
return c, nil
}
// Override the Client's HTTP Transport object
func (c *Client) SetTransport(tr *http.Transport) {
c.httpClient.Transport = tr
}
// initHTTPClient initializes a HTTP client for etcd client
func (c *Client) initHTTPClient() {
tr := &http.Transport{
Dial: dialTimeout,
TLSClientConfig: &tls.Config{
InsecureSkipVerify: true,
},
}
c.httpClient = &http.Client{Transport: tr}
}
// initHTTPClient initializes a HTTPS client for etcd client
func (c *Client) initHTTPSClient(cert, key string) error {
if cert == "" || key == "" {
return errors.New("Require both cert and key path")
}
tlsCert, err := tls.LoadX509KeyPair(cert, key)
if err != nil {
return err
}
tlsConfig := &tls.Config{
Certificates: []tls.Certificate{tlsCert},
InsecureSkipVerify: true,
}
tr := &http.Transport{
TLSClientConfig: tlsConfig,
Dial: dialTimeout,
}
c.httpClient = &http.Client{Transport: tr}
return nil
}
// SetPersistence sets a writer to which the config will be
// written every time it's changed.
func (c *Client) SetPersistence(writer io.Writer) {
c.persistence = writer
}
// SetConsistency changes the consistency level of the client.
//
// When consistency is set to STRONG_CONSISTENCY, all requests,
// including GET, are sent to the leader. This means that, assuming
// the absence of leader failures, GET requests are guaranteed to see
// the changes made by previous requests.
//
// When consistency is set to WEAK_CONSISTENCY, other requests
// are still sent to the leader, but GET requests are sent to a
// random server from the server pool. This reduces the read
// load on the leader, but it's not guaranteed that the GET requests
// will see changes made by previous requests (they might have not
// yet been committed on non-leader servers).
func (c *Client) SetConsistency(consistency string) error {
if !(consistency == STRONG_CONSISTENCY || consistency == WEAK_CONSISTENCY) {
return errors.New("The argument must be either STRONG_CONSISTENCY or WEAK_CONSISTENCY.")
}
c.config.Consistency = consistency
return nil
}
// AddRootCA adds a root CA cert for the etcd client
func (c *Client) AddRootCA(caCert string) error {
if c.httpClient == nil {
return errors.New("Client has not been initialized yet!")
}
certBytes, err := ioutil.ReadFile(caCert)
if err != nil {
return err
}
tr, ok := c.httpClient.Transport.(*http.Transport)
if !ok {
panic("AddRootCA(): Transport type assert should not fail")
}
if tr.TLSClientConfig.RootCAs == nil {
caCertPool := x509.NewCertPool()
ok = caCertPool.AppendCertsFromPEM(certBytes)
if ok {
tr.TLSClientConfig.RootCAs = caCertPool
}
tr.TLSClientConfig.InsecureSkipVerify = false
} else {
ok = tr.TLSClientConfig.RootCAs.AppendCertsFromPEM(certBytes)
}
if !ok {
err = errors.New("Unable to load caCert")
}
c.config.CaCertFile = append(c.config.CaCertFile, caCert)
c.saveConfig()
return err
}
// SetCluster updates cluster information using the given machine list.
func (c *Client) SetCluster(machines []string) bool {
success := c.internalSyncCluster(machines)
return success
}
func (c *Client) GetCluster() []string {
return c.cluster.Machines
}
// SyncCluster updates the cluster information using the internal machine list.
func (c *Client) SyncCluster() bool {
return c.internalSyncCluster(c.cluster.Machines)
}
// internalSyncCluster syncs cluster information using the given machine list.
func (c *Client) internalSyncCluster(machines []string) bool {
for _, machine := range machines {
httpPath := c.createHttpPath(machine, path.Join(version, "machines"))
resp, err := c.httpClient.Get(httpPath)
if err != nil {
// try another machine in the cluster
continue
} else {
b, err := ioutil.ReadAll(resp.Body)
resp.Body.Close()
if err != nil {
// try another machine in the cluster
continue
}
// update Machines List
c.cluster.updateFromStr(string(b))
// update leader
// the first one in the machine list is the leader
c.cluster.switchLeader(0)
logger.Debug("sync.machines ", c.cluster.Machines)
c.saveConfig()
return true
}
}
return false
}
// createHttpPath creates a complete HTTP URL.
// serverName should contain both the host name and a port number, if any.
func (c *Client) createHttpPath(serverName string, _path string) string {
u, err := url.Parse(serverName)
if err != nil {
panic(err)
}
u.Path = path.Join(u.Path, _path)
if u.Scheme == "" {
u.Scheme = "http"
}
return u.String()
}
// Dial with timeout.
func dialTimeout(network, addr string) (net.Conn, error) {
tcpAddr, err := net.ResolveTCPAddr(network, addr)
if err != nil {
return nil, err
}
tcpConn, err := net.DialTCP(network, nil, tcpAddr)
if err != nil {
return nil, err
}
// Keep TCP alive to check whether or not the remote machine is down
if err = tcpConn.SetKeepAlive(true); err != nil {
return nil, err
}
if err = tcpConn.SetKeepAlivePeriod(time.Second); err != nil {
return nil, err
}
return tcpConn, nil
}
func (c *Client) OpenCURL() {
c.cURLch = make(chan string, defaultBufferSize)
}
func (c *Client) CloseCURL() {
c.cURLch = nil
}
func (c *Client) sendCURL(command string) {
go func() {
select {
case c.cURLch <- command:
default:
}
}()
}
func (c *Client) RecvCURL() string {
return <-c.cURLch
}
// saveConfig saves the current config using c.persistence.
func (c *Client) saveConfig() error {
if c.persistence != nil {
b, err := json.Marshal(c)
if err != nil {
return err
}
_, err = c.persistence.Write(b)
if err != nil {
return err
}
}
return nil
}
// MarshalJSON implements the Marshaller interface
// as defined by the standard JSON package.
func (c *Client) MarshalJSON() ([]byte, error) {
b, err := json.Marshal(struct {
Config Config `json:"config"`
Cluster *Cluster `json:"cluster"`
}{
Config: c.config,
Cluster: c.cluster,
})
if err != nil {
return nil, err
}
return b, nil
}
// UnmarshalJSON implements the Unmarshaller interface
// as defined by the standard JSON package.
func (c *Client) UnmarshalJSON(b []byte) error {
temp := struct {
Config Config `json: "config"`
Cluster *Cluster `json: "cluster"`
}{}
err := json.Unmarshal(b, &temp)
if err != nil {
return err
}
c.cluster = temp.Cluster
c.config = temp.Config
return nil
}

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