diff options
Diffstat (limited to 'vendor/github.com')
27 files changed, 3896 insertions, 933 deletions
diff --git a/vendor/github.com/containers/common/libimage/filters.go b/vendor/github.com/containers/common/libimage/filters.go index eae18fd9c..280e06761 100644 --- a/vendor/github.com/containers/common/libimage/filters.go +++ b/vendor/github.com/containers/common/libimage/filters.go @@ -63,14 +63,14 @@ func (r *Runtime) compileImageFilters(ctx context.Context, filters []string) ([] switch key { case "after", "since": - img, _, err := r.LookupImage(value, nil) + img, _, err := r.LookupImage(value, &LookupImageOptions{IgnorePlatform: true}) if err != nil { return nil, errors.Wrapf(err, "could not find local image for filter %q", filter) } filterFuncs = append(filterFuncs, filterAfter(img.Created())) case "before": - img, _, err := r.LookupImage(value, nil) + img, _, err := r.LookupImage(value, &LookupImageOptions{IgnorePlatform: true}) if err != nil { return nil, errors.Wrapf(err, "could not find local image for filter %q", filter) } diff --git a/vendor/github.com/containers/common/libimage/pull.go b/vendor/github.com/containers/common/libimage/pull.go index d41bcd57b..ee91b17ab 100644 --- a/vendor/github.com/containers/common/libimage/pull.go +++ b/vendor/github.com/containers/common/libimage/pull.go @@ -61,7 +61,7 @@ func (r *Runtime) Pull(ctx context.Context, name string, pullPolicy config.PullP if pullPolicy == config.PullPolicyAlways { return nil, errors.Errorf("pull policy is always but image has been referred to by ID (%s)", name) } - local, _, err := r.LookupImage(name, nil) + local, _, err := r.LookupImage(name, &LookupImageOptions{IgnorePlatform: true}) if err != nil { return nil, err } @@ -145,9 +145,8 @@ func (r *Runtime) Pull(ctx context.Context, name string, pullPolicy config.PullP } localImages := []*Image{} - lookupOptions := &LookupImageOptions{IgnorePlatform: true} for _, name := range pulledImages { - local, _, err := r.LookupImage(name, lookupOptions) + local, _, err := r.LookupImage(name, &LookupImageOptions{IgnorePlatform: true}) if err != nil { return nil, errors.Wrapf(err, "error locating pulled image %q name in containers storage", name) } diff --git a/vendor/github.com/containers/common/libimage/save.go b/vendor/github.com/containers/common/libimage/save.go index e1b8c3f75..10d26bebf 100644 --- a/vendor/github.com/containers/common/libimage/save.go +++ b/vendor/github.com/containers/common/libimage/save.go @@ -74,7 +74,7 @@ func (r *Runtime) Save(ctx context.Context, names []string, format, path string, // saveSingleImage saves the specified image name to the specified path. // Supported formats are "oci-archive", "oci-dir" and "docker-dir". func (r *Runtime) saveSingleImage(ctx context.Context, name, format, path string, options *SaveOptions) error { - image, imageName, err := r.LookupImage(name, nil) + image, imageName, err := r.LookupImage(name, &LookupImageOptions{IgnorePlatform: true}) if err != nil { return err } @@ -155,7 +155,7 @@ func (r *Runtime) saveDockerArchive(ctx context.Context, names []string, path st visitedNames := make(map[string]bool) // filters duplicate names for _, name := range names { // Look up local images. - image, imageName, err := r.LookupImage(name, nil) + image, imageName, err := r.LookupImage(name, &LookupImageOptions{IgnorePlatform: true}) if err != nil { return err } diff --git a/vendor/github.com/containers/common/pkg/config/config.go b/vendor/github.com/containers/common/pkg/config/config.go index af6efbbf2..68076b117 100644 --- a/vendor/github.com/containers/common/pkg/config/config.go +++ b/vendor/github.com/containers/common/pkg/config/config.go @@ -526,9 +526,15 @@ func NewConfig(userConfigPath string) (*Config, error) { // the defaults from the config parameter will be used for all other fields. func readConfigFromFile(path string, config *Config) error { logrus.Tracef("Reading configuration file %q", path) - if _, err := toml.DecodeFile(path, config); err != nil { + meta, err := toml.DecodeFile(path, config) + if err != nil { return errors.Wrapf(err, "decode configuration %v", path) } + keys := meta.Undecoded() + if len(keys) > 0 { + logrus.Warningf("Failed to decode the keys %q from %q.", keys, path) + } + return nil } diff --git a/vendor/github.com/containers/common/pkg/secrets/secrets.go b/vendor/github.com/containers/common/pkg/secrets/secrets.go index 2573b80e2..2e7802369 100644 --- a/vendor/github.com/containers/common/pkg/secrets/secrets.go +++ b/vendor/github.com/containers/common/pkg/secrets/secrets.go @@ -9,6 +9,7 @@ import ( "github.com/containers/common/pkg/secrets/filedriver" "github.com/containers/common/pkg/secrets/passdriver" + "github.com/containers/common/pkg/secrets/shelldriver" "github.com/containers/storage/pkg/lockfile" "github.com/containers/storage/pkg/stringid" "github.com/pkg/errors" @@ -281,6 +282,8 @@ func getDriver(name string, opts map[string]string) (SecretsDriver, error) { } case "pass": return passdriver.NewDriver(opts) + case "shell": + return shelldriver.NewDriver(opts) } return nil, errInvalidDriver } diff --git a/vendor/github.com/containers/common/pkg/secrets/shelldriver/shelldriver.go b/vendor/github.com/containers/common/pkg/secrets/shelldriver/shelldriver.go new file mode 100644 index 000000000..22aacb1ce --- /dev/null +++ b/vendor/github.com/containers/common/pkg/secrets/shelldriver/shelldriver.go @@ -0,0 +1,159 @@ +package shelldriver + +import ( + "bytes" + "context" + "os" + "os/exec" + "sort" + "strings" + + "github.com/mitchellh/mapstructure" + "github.com/pkg/errors" +) + +var ( + + // errMissingConfig indicates that one or more of the external actions are not configured + errMissingConfig = errors.New("missing config value") + + // errNoSecretData indicates that there is not data associated with an id + errNoSecretData = errors.New("no secret data with ID") + + // errInvalidKey indicates that something about your key is wrong + errInvalidKey = errors.New("invalid key") +) + +type driverConfig struct { + // DeleteCommand contains a shell command that deletes a secret. + // The secret id is provided as environment variable SECRET_ID + DeleteCommand string `mapstructure:"delete"` + // ListCommand contains a shell command that lists all secrets. + // The output is expected to be one id per line + ListCommand string `mapstructure:"list"` + // LookupCommand contains a shell command that retrieves a secret. + // The secret id is provided as environment variable SECRET_ID + LookupCommand string `mapstructure:"lookup"` + // StoreCommand contains a shell command that stores a secret. + // The secret id is provided as environment variable SECRET_ID + // The secret value itself is provied over stdin + StoreCommand string `mapstructure:"store"` +} + +func (cfg *driverConfig) ParseOpts(opts map[string]string) error { + if err := mapstructure.Decode(opts, cfg); err != nil { + return err + } + if cfg.DeleteCommand == "" || + cfg.ListCommand == "" || + cfg.LookupCommand == "" || + cfg.StoreCommand == "" { + + return errMissingConfig + } + return nil +} + +// Driver is the passdriver object +type Driver struct { + driverConfig +} + +// NewDriver creates a new secret driver. +func NewDriver(opts map[string]string) (*Driver, error) { + cfg := &driverConfig{} + if err := cfg.ParseOpts(opts); err != nil { + return nil, err + } + + driver := &Driver{ + driverConfig: *cfg, + } + + return driver, nil +} + +// List returns all secret IDs +func (d *Driver) List() (secrets []string, err error) { + cmd := exec.CommandContext(context.TODO(), "/bin/sh", "-c", d.ListCommand) + cmd.Env = os.Environ() + cmd.Stderr = os.Stderr + + buf := &bytes.Buffer{} + cmd.Stdout = buf + + err = cmd.Run() + if err != nil { + return nil, err + } + + parts := bytes.Split(buf.Bytes(), []byte("\n")) + for _, part := range parts { + id := strings.Trim(string(part), " \r\n") + if len(id) > 0 { + secrets = append(secrets, id) + } + } + sort.Strings(secrets) + + return secrets, nil +} + +// Lookup returns the bytes associated with a secret ID +func (d *Driver) Lookup(id string) ([]byte, error) { + if strings.Contains(id, "..") { + return nil, errInvalidKey + } + + cmd := exec.CommandContext(context.TODO(), "/bin/sh", "-c", d.LookupCommand) + cmd.Env = os.Environ() + cmd.Env = append(cmd.Env, "SECRET_ID="+id) + cmd.Stderr = os.Stderr + + buf := &bytes.Buffer{} + cmd.Stdout = buf + + err := cmd.Run() + if err != nil { + return nil, errors.Wrap(errNoSecretData, id) + } + return buf.Bytes(), nil +} + +// Store saves the bytes associated with an ID. An error is returned if the ID already exists +func (d *Driver) Store(id string, data []byte) error { + if strings.Contains(id, "..") { + return errInvalidKey + } + + cmd := exec.CommandContext(context.TODO(), "/bin/sh", "-c", d.StoreCommand) + cmd.Env = os.Environ() + cmd.Env = append(cmd.Env, "SECRET_ID="+id) + + cmd.Stderr = os.Stderr + cmd.Stdout = os.Stdout + cmd.Stdin = bytes.NewReader(data) + + return cmd.Run() +} + +// Delete removes the secret associated with the specified ID. An error is returned if no matching secret is found. +func (d *Driver) Delete(id string) error { + if strings.Contains(id, "..") { + return errInvalidKey + } + + cmd := exec.CommandContext(context.TODO(), "/bin/sh", "-c", d.DeleteCommand) + cmd.Env = os.Environ() + cmd.Env = append(cmd.Env, "SECRET_ID="+id) + + cmd.Stderr = os.Stderr + cmd.Stdout = os.Stdout + + err := cmd.Run() + if err != nil { + return errors.Wrap(errNoSecretData, id) + } + + return nil +} diff --git a/vendor/github.com/mitchellh/mapstructure/CHANGELOG.md b/vendor/github.com/mitchellh/mapstructure/CHANGELOG.md new file mode 100644 index 000000000..1955f2878 --- /dev/null +++ b/vendor/github.com/mitchellh/mapstructure/CHANGELOG.md @@ -0,0 +1,73 @@ +## unreleased + +* Fix regression where `*time.Time` value would be set to empty and not be sent + to decode hooks properly [GH-232] + +## 1.4.0 + +* A new decode hook type `DecodeHookFuncValue` has been added that has + access to the full values. [GH-183] +* Squash is now supported with embedded fields that are struct pointers [GH-205] +* Empty strings will convert to 0 for all numeric types when weakly decoding [GH-206] + +## 1.3.3 + +* Decoding maps from maps creates a settable value for decode hooks [GH-203] + +## 1.3.2 + +* Decode into interface type with a struct value is supported [GH-187] + +## 1.3.1 + +* Squash should only squash embedded structs. [GH-194] + +## 1.3.0 + +* Added `",omitempty"` support. This will ignore zero values in the source + structure when encoding. [GH-145] + +## 1.2.3 + +* Fix duplicate entries in Keys list with pointer values. [GH-185] + +## 1.2.2 + +* Do not add unsettable (unexported) values to the unused metadata key + or "remain" value. [GH-150] + +## 1.2.1 + +* Go modules checksum mismatch fix + +## 1.2.0 + +* Added support to capture unused values in a field using the `",remain"` value + in the mapstructure tag. There is an example to showcase usage. +* Added `DecoderConfig` option to always squash embedded structs +* `json.Number` can decode into `uint` types +* Empty slices are preserved and not replaced with nil slices +* Fix panic that can occur in when decoding a map into a nil slice of structs +* Improved package documentation for godoc + +## 1.1.2 + +* Fix error when decode hook decodes interface implementation into interface + type. [GH-140] + +## 1.1.1 + +* Fix panic that can happen in `decodePtr` + +## 1.1.0 + +* Added `StringToIPHookFunc` to convert `string` to `net.IP` and `net.IPNet` [GH-133] +* Support struct to struct decoding [GH-137] +* If source map value is nil, then destination map value is nil (instead of empty) +* If source slice value is nil, then destination slice value is nil (instead of empty) +* If source pointer is nil, then destination pointer is set to nil (instead of + allocated zero value of type) + +## 1.0.0 + +* Initial tagged stable release. diff --git a/vendor/github.com/mitchellh/mapstructure/LICENSE b/vendor/github.com/mitchellh/mapstructure/LICENSE new file mode 100644 index 000000000..f9c841a51 --- /dev/null +++ b/vendor/github.com/mitchellh/mapstructure/LICENSE @@ -0,0 +1,21 @@ +The MIT License (MIT) + +Copyright (c) 2013 Mitchell Hashimoto + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in +all copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN +THE SOFTWARE. diff --git a/vendor/github.com/mitchellh/mapstructure/README.md b/vendor/github.com/mitchellh/mapstructure/README.md new file mode 100644 index 000000000..0018dc7d9 --- /dev/null +++ b/vendor/github.com/mitchellh/mapstructure/README.md @@ -0,0 +1,46 @@ +# mapstructure [![Godoc](https://godoc.org/github.com/mitchellh/mapstructure?status.svg)](https://godoc.org/github.com/mitchellh/mapstructure) + +mapstructure is a Go library for decoding generic map values to structures +and vice versa, while providing helpful error handling. + +This library is most useful when decoding values from some data stream (JSON, +Gob, etc.) where you don't _quite_ know the structure of the underlying data +until you read a part of it. You can therefore read a `map[string]interface{}` +and use this library to decode it into the proper underlying native Go +structure. + +## Installation + +Standard `go get`: + +``` +$ go get github.com/mitchellh/mapstructure +``` + +## Usage & Example + +For usage and examples see the [Godoc](http://godoc.org/github.com/mitchellh/mapstructure). + +The `Decode` function has examples associated with it there. + +## But Why?! + +Go offers fantastic standard libraries for decoding formats such as JSON. +The standard method is to have a struct pre-created, and populate that struct +from the bytes of the encoded format. This is great, but the problem is if +you have configuration or an encoding that changes slightly depending on +specific fields. For example, consider this JSON: + +```json +{ + "type": "person", + "name": "Mitchell" +} +``` + +Perhaps we can't populate a specific structure without first reading +the "type" field from the JSON. We could always do two passes over the +decoding of the JSON (reading the "type" first, and the rest later). +However, it is much simpler to just decode this into a `map[string]interface{}` +structure, read the "type" key, then use something like this library +to decode it into the proper structure. diff --git a/vendor/github.com/mitchellh/mapstructure/decode_hooks.go b/vendor/github.com/mitchellh/mapstructure/decode_hooks.go new file mode 100644 index 000000000..92e6f76ff --- /dev/null +++ b/vendor/github.com/mitchellh/mapstructure/decode_hooks.go @@ -0,0 +1,256 @@ +package mapstructure + +import ( + "encoding" + "errors" + "fmt" + "net" + "reflect" + "strconv" + "strings" + "time" +) + +// typedDecodeHook takes a raw DecodeHookFunc (an interface{}) and turns +// it into the proper DecodeHookFunc type, such as DecodeHookFuncType. +func typedDecodeHook(h DecodeHookFunc) DecodeHookFunc { + // Create variables here so we can reference them with the reflect pkg + var f1 DecodeHookFuncType + var f2 DecodeHookFuncKind + var f3 DecodeHookFuncValue + + // Fill in the variables into this interface and the rest is done + // automatically using the reflect package. + potential := []interface{}{f1, f2, f3} + + v := reflect.ValueOf(h) + vt := v.Type() + for _, raw := range potential { + pt := reflect.ValueOf(raw).Type() + if vt.ConvertibleTo(pt) { + return v.Convert(pt).Interface() + } + } + + return nil +} + +// DecodeHookExec executes the given decode hook. This should be used +// since it'll naturally degrade to the older backwards compatible DecodeHookFunc +// that took reflect.Kind instead of reflect.Type. +func DecodeHookExec( + raw DecodeHookFunc, + from reflect.Value, to reflect.Value) (interface{}, error) { + + switch f := typedDecodeHook(raw).(type) { + case DecodeHookFuncType: + return f(from.Type(), to.Type(), from.Interface()) + case DecodeHookFuncKind: + return f(from.Kind(), to.Kind(), from.Interface()) + case DecodeHookFuncValue: + return f(from, to) + default: + return nil, errors.New("invalid decode hook signature") + } +} + +// ComposeDecodeHookFunc creates a single DecodeHookFunc that +// automatically composes multiple DecodeHookFuncs. +// +// The composed funcs are called in order, with the result of the +// previous transformation. +func ComposeDecodeHookFunc(fs ...DecodeHookFunc) DecodeHookFunc { + return func(f reflect.Value, t reflect.Value) (interface{}, error) { + var err error + var data interface{} + newFrom := f + for _, f1 := range fs { + data, err = DecodeHookExec(f1, newFrom, t) + if err != nil { + return nil, err + } + newFrom = reflect.ValueOf(data) + } + + return data, nil + } +} + +// StringToSliceHookFunc returns a DecodeHookFunc that converts +// string to []string by splitting on the given sep. +func StringToSliceHookFunc(sep string) DecodeHookFunc { + return func( + f reflect.Kind, + t reflect.Kind, + data interface{}) (interface{}, error) { + if f != reflect.String || t != reflect.Slice { + return data, nil + } + + raw := data.(string) + if raw == "" { + return []string{}, nil + } + + return strings.Split(raw, sep), nil + } +} + +// StringToTimeDurationHookFunc returns a DecodeHookFunc that converts +// strings to time.Duration. +func StringToTimeDurationHookFunc() DecodeHookFunc { + return func( + f reflect.Type, + t reflect.Type, + data interface{}) (interface{}, error) { + if f.Kind() != reflect.String { + return data, nil + } + if t != reflect.TypeOf(time.Duration(5)) { + return data, nil + } + + // Convert it by parsing + return time.ParseDuration(data.(string)) + } +} + +// StringToIPHookFunc returns a DecodeHookFunc that converts +// strings to net.IP +func StringToIPHookFunc() DecodeHookFunc { + return func( + f reflect.Type, + t reflect.Type, + data interface{}) (interface{}, error) { + if f.Kind() != reflect.String { + return data, nil + } + if t != reflect.TypeOf(net.IP{}) { + return data, nil + } + + // Convert it by parsing + ip := net.ParseIP(data.(string)) + if ip == nil { + return net.IP{}, fmt.Errorf("failed parsing ip %v", data) + } + + return ip, nil + } +} + +// StringToIPNetHookFunc returns a DecodeHookFunc that converts +// strings to net.IPNet +func StringToIPNetHookFunc() DecodeHookFunc { + return func( + f reflect.Type, + t reflect.Type, + data interface{}) (interface{}, error) { + if f.Kind() != reflect.String { + return data, nil + } + if t != reflect.TypeOf(net.IPNet{}) { + return data, nil + } + + // Convert it by parsing + _, net, err := net.ParseCIDR(data.(string)) + return net, err + } +} + +// StringToTimeHookFunc returns a DecodeHookFunc that converts +// strings to time.Time. +func StringToTimeHookFunc(layout string) DecodeHookFunc { + return func( + f reflect.Type, + t reflect.Type, + data interface{}) (interface{}, error) { + if f.Kind() != reflect.String { + return data, nil + } + if t != reflect.TypeOf(time.Time{}) { + return data, nil + } + + // Convert it by parsing + return time.Parse(layout, data.(string)) + } +} + +// WeaklyTypedHook is a DecodeHookFunc which adds support for weak typing to +// the decoder. +// +// Note that this is significantly different from the WeaklyTypedInput option +// of the DecoderConfig. +func WeaklyTypedHook( + f reflect.Kind, + t reflect.Kind, + data interface{}) (interface{}, error) { + dataVal := reflect.ValueOf(data) + switch t { + case reflect.String: + switch f { + case reflect.Bool: + if dataVal.Bool() { + return "1", nil + } + return "0", nil + case reflect.Float32: + return strconv.FormatFloat(dataVal.Float(), 'f', -1, 64), nil + case reflect.Int: + return strconv.FormatInt(dataVal.Int(), 10), nil + case reflect.Slice: + dataType := dataVal.Type() + elemKind := dataType.Elem().Kind() + if elemKind == reflect.Uint8 { + return string(dataVal.Interface().([]uint8)), nil + } + case reflect.Uint: + return strconv.FormatUint(dataVal.Uint(), 10), nil + } + } + + return data, nil +} + +func RecursiveStructToMapHookFunc() DecodeHookFunc { + return func(f reflect.Value, t reflect.Value) (interface{}, error) { + if f.Kind() != reflect.Struct { + return f.Interface(), nil + } + + var i interface{} = struct{}{} + if t.Type() != reflect.TypeOf(&i).Elem() { + return f.Interface(), nil + } + + m := make(map[string]interface{}) + t.Set(reflect.ValueOf(m)) + + return f.Interface(), nil + } +} + +// TextUnmarshallerHookFunc returns a DecodeHookFunc that applies +// strings to the UnmarshalText function, when the target type +// implements the encoding.TextUnmarshaler interface +func TextUnmarshallerHookFunc() DecodeHookFuncType { + return func( + f reflect.Type, + t reflect.Type, + data interface{}) (interface{}, error) { + if f.Kind() != reflect.String { + return data, nil + } + result := reflect.New(t).Interface() + unmarshaller, ok := result.(encoding.TextUnmarshaler) + if !ok { + return data, nil + } + if err := unmarshaller.UnmarshalText([]byte(data.(string))); err != nil { + return nil, err + } + return result, nil + } +} diff --git a/vendor/github.com/mitchellh/mapstructure/error.go b/vendor/github.com/mitchellh/mapstructure/error.go new file mode 100644 index 000000000..47a99e5af --- /dev/null +++ b/vendor/github.com/mitchellh/mapstructure/error.go @@ -0,0 +1,50 @@ +package mapstructure + +import ( + "errors" + "fmt" + "sort" + "strings" +) + +// Error implements the error interface and can represents multiple +// errors that occur in the course of a single decode. +type Error struct { + Errors []string +} + +func (e *Error) Error() string { + points := make([]string, len(e.Errors)) + for i, err := range e.Errors { + points[i] = fmt.Sprintf("* %s", err) + } + + sort.Strings(points) + return fmt.Sprintf( + "%d error(s) decoding:\n\n%s", + len(e.Errors), strings.Join(points, "\n")) +} + +// WrappedErrors implements the errwrap.Wrapper interface to make this +// return value more useful with the errwrap and go-multierror libraries. +func (e *Error) WrappedErrors() []error { + if e == nil { + return nil + } + + result := make([]error, len(e.Errors)) + for i, e := range e.Errors { + result[i] = errors.New(e) + } + + return result +} + +func appendErrors(errors []string, err error) []string { + switch e := err.(type) { + case *Error: + return append(errors, e.Errors...) + default: + return append(errors, e.Error()) + } +} diff --git a/vendor/github.com/mitchellh/mapstructure/go.mod b/vendor/github.com/mitchellh/mapstructure/go.mod new file mode 100644 index 000000000..a03ae9730 --- /dev/null +++ b/vendor/github.com/mitchellh/mapstructure/go.mod @@ -0,0 +1,3 @@ +module github.com/mitchellh/mapstructure + +go 1.14 diff --git a/vendor/github.com/mitchellh/mapstructure/mapstructure.go b/vendor/github.com/mitchellh/mapstructure/mapstructure.go new file mode 100644 index 000000000..3643901f5 --- /dev/null +++ b/vendor/github.com/mitchellh/mapstructure/mapstructure.go @@ -0,0 +1,1462 @@ +// Package mapstructure exposes functionality to convert one arbitrary +// Go type into another, typically to convert a map[string]interface{} +// into a native Go structure. +// +// The Go structure can be arbitrarily complex, containing slices, +// other structs, etc. and the decoder will properly decode nested +// maps and so on into the proper structures in the native Go struct. +// See the examples to see what the decoder is capable of. +// +// The simplest function to start with is Decode. +// +// Field Tags +// +// When decoding to a struct, mapstructure will use the field name by +// default to perform the mapping. For example, if a struct has a field +// "Username" then mapstructure will look for a key in the source value +// of "username" (case insensitive). +// +// type User struct { +// Username string +// } +// +// You can change the behavior of mapstructure by using struct tags. +// The default struct tag that mapstructure looks for is "mapstructure" +// but you can customize it using DecoderConfig. +// +// Renaming Fields +// +// To rename the key that mapstructure looks for, use the "mapstructure" +// tag and set a value directly. For example, to change the "username" example +// above to "user": +// +// type User struct { +// Username string `mapstructure:"user"` +// } +// +// Embedded Structs and Squashing +// +// Embedded structs are treated as if they're another field with that name. +// By default, the two structs below are equivalent when decoding with +// mapstructure: +// +// type Person struct { +// Name string +// } +// +// type Friend struct { +// Person +// } +// +// type Friend struct { +// Person Person +// } +// +// This would require an input that looks like below: +// +// map[string]interface{}{ +// "person": map[string]interface{}{"name": "alice"}, +// } +// +// If your "person" value is NOT nested, then you can append ",squash" to +// your tag value and mapstructure will treat it as if the embedded struct +// were part of the struct directly. Example: +// +// type Friend struct { +// Person `mapstructure:",squash"` +// } +// +// Now the following input would be accepted: +// +// map[string]interface{}{ +// "name": "alice", +// } +// +// When decoding from a struct to a map, the squash tag squashes the struct +// fields into a single map. Using the example structs from above: +// +// Friend{Person: Person{Name: "alice"}} +// +// Will be decoded into a map: +// +// map[string]interface{}{ +// "name": "alice", +// } +// +// DecoderConfig has a field that changes the behavior of mapstructure +// to always squash embedded structs. +// +// Remainder Values +// +// If there are any unmapped keys in the source value, mapstructure by +// default will silently ignore them. You can error by setting ErrorUnused +// in DecoderConfig. If you're using Metadata you can also maintain a slice +// of the unused keys. +// +// You can also use the ",remain" suffix on your tag to collect all unused +// values in a map. The field with this tag MUST be a map type and should +// probably be a "map[string]interface{}" or "map[interface{}]interface{}". +// See example below: +// +// type Friend struct { +// Name string +// Other map[string]interface{} `mapstructure:",remain"` +// } +// +// Given the input below, Other would be populated with the other +// values that weren't used (everything but "name"): +// +// map[string]interface{}{ +// "name": "bob", +// "address": "123 Maple St.", +// } +// +// Omit Empty Values +// +// When decoding from a struct to any other value, you may use the +// ",omitempty" suffix on your tag to omit that value if it equates to +// the zero value. The zero value of all types is specified in the Go +// specification. +// +// For example, the zero type of a numeric type is zero ("0"). If the struct +// field value is zero and a numeric type, the field is empty, and it won't +// be encoded into the destination type. +// +// type Source { +// Age int `mapstructure:",omitempty"` +// } +// +// Unexported fields +// +// Since unexported (private) struct fields cannot be set outside the package +// where they are defined, the decoder will simply skip them. +// +// For this output type definition: +// +// type Exported struct { +// private string // this unexported field will be skipped +// Public string +// } +// +// Using this map as input: +// +// map[string]interface{}{ +// "private": "I will be ignored", +// "Public": "I made it through!", +// } +// +// The following struct will be decoded: +// +// type Exported struct { +// private: "" // field is left with an empty string (zero value) +// Public: "I made it through!" +// } +// +// Other Configuration +// +// mapstructure is highly configurable. See the DecoderConfig struct +// for other features and options that are supported. +package mapstructure + +import ( + "encoding/json" + "errors" + "fmt" + "reflect" + "sort" + "strconv" + "strings" +) + +// DecodeHookFunc is the callback function that can be used for +// data transformations. See "DecodeHook" in the DecoderConfig +// struct. +// +// The type must be one of DecodeHookFuncType, DecodeHookFuncKind, or +// DecodeHookFuncValue. +// Values are a superset of Types (Values can return types), and Types are a +// superset of Kinds (Types can return Kinds) and are generally a richer thing +// to use, but Kinds are simpler if you only need those. +// +// The reason DecodeHookFunc is multi-typed is for backwards compatibility: +// we started with Kinds and then realized Types were the better solution, +// but have a promise to not break backwards compat so we now support +// both. +type DecodeHookFunc interface{} + +// DecodeHookFuncType is a DecodeHookFunc which has complete information about +// the source and target types. +type DecodeHookFuncType func(reflect.Type, reflect.Type, interface{}) (interface{}, error) + +// DecodeHookFuncKind is a DecodeHookFunc which knows only the Kinds of the +// source and target types. +type DecodeHookFuncKind func(reflect.Kind, reflect.Kind, interface{}) (interface{}, error) + +// DecodeHookFuncRaw is a DecodeHookFunc which has complete access to both the source and target +// values. +type DecodeHookFuncValue func(from reflect.Value, to reflect.Value) (interface{}, error) + +// DecoderConfig is the configuration that is used to create a new decoder +// and allows customization of various aspects of decoding. +type DecoderConfig struct { + // DecodeHook, if set, will be called before any decoding and any + // type conversion (if WeaklyTypedInput is on). This lets you modify + // the values before they're set down onto the resulting struct. The + // DecodeHook is called for every map and value in the input. This means + // that if a struct has embedded fields with squash tags the decode hook + // is called only once with all of the input data, not once for each + // embedded struct. + // + // If an error is returned, the entire decode will fail with that error. + DecodeHook DecodeHookFunc + + // If ErrorUnused is true, then it is an error for there to exist + // keys in the original map that were unused in the decoding process + // (extra keys). + ErrorUnused bool + + // ZeroFields, if set to true, will zero fields before writing them. + // For example, a map will be emptied before decoded values are put in + // it. If this is false, a map will be merged. + ZeroFields bool + + // If WeaklyTypedInput is true, the decoder will make the following + // "weak" conversions: + // + // - bools to string (true = "1", false = "0") + // - numbers to string (base 10) + // - bools to int/uint (true = 1, false = 0) + // - strings to int/uint (base implied by prefix) + // - int to bool (true if value != 0) + // - string to bool (accepts: 1, t, T, TRUE, true, True, 0, f, F, + // FALSE, false, False. Anything else is an error) + // - empty array = empty map and vice versa + // - negative numbers to overflowed uint values (base 10) + // - slice of maps to a merged map + // - single values are converted to slices if required. Each + // element is weakly decoded. For example: "4" can become []int{4} + // if the target type is an int slice. + // + WeaklyTypedInput bool + + // Squash will squash embedded structs. A squash tag may also be + // added to an individual struct field using a tag. For example: + // + // type Parent struct { + // Child `mapstructure:",squash"` + // } + Squash bool + + // Metadata is the struct that will contain extra metadata about + // the decoding. If this is nil, then no metadata will be tracked. + Metadata *Metadata + + // Result is a pointer to the struct that will contain the decoded + // value. + Result interface{} + + // The tag name that mapstructure reads for field names. This + // defaults to "mapstructure" + TagName string +} + +// A Decoder takes a raw interface value and turns it into structured +// data, keeping track of rich error information along the way in case +// anything goes wrong. Unlike the basic top-level Decode method, you can +// more finely control how the Decoder behaves using the DecoderConfig +// structure. The top-level Decode method is just a convenience that sets +// up the most basic Decoder. +type Decoder struct { + config *DecoderConfig +} + +// Metadata contains information about decoding a structure that +// is tedious or difficult to get otherwise. +type Metadata struct { + // Keys are the keys of the structure which were successfully decoded + Keys []string + + // Unused is a slice of keys that were found in the raw value but + // weren't decoded since there was no matching field in the result interface + Unused []string +} + +// Decode takes an input structure and uses reflection to translate it to +// the output structure. output must be a pointer to a map or struct. +func Decode(input interface{}, output interface{}) error { + config := &DecoderConfig{ + Metadata: nil, + Result: output, + } + + decoder, err := NewDecoder(config) + if err != nil { + return err + } + + return decoder.Decode(input) +} + +// WeakDecode is the same as Decode but is shorthand to enable +// WeaklyTypedInput. See DecoderConfig for more info. +func WeakDecode(input, output interface{}) error { + config := &DecoderConfig{ + Metadata: nil, + Result: output, + WeaklyTypedInput: true, + } + + decoder, err := NewDecoder(config) + if err != nil { + return err + } + + return decoder.Decode(input) +} + +// DecodeMetadata is the same as Decode, but is shorthand to +// enable metadata collection. See DecoderConfig for more info. +func DecodeMetadata(input interface{}, output interface{}, metadata *Metadata) error { + config := &DecoderConfig{ + Metadata: metadata, + Result: output, + } + + decoder, err := NewDecoder(config) + if err != nil { + return err + } + + return decoder.Decode(input) +} + +// WeakDecodeMetadata is the same as Decode, but is shorthand to +// enable both WeaklyTypedInput and metadata collection. See +// DecoderConfig for more info. +func WeakDecodeMetadata(input interface{}, output interface{}, metadata *Metadata) error { + config := &DecoderConfig{ + Metadata: metadata, + Result: output, + WeaklyTypedInput: true, + } + + decoder, err := NewDecoder(config) + if err != nil { + return err + } + + return decoder.Decode(input) +} + +// NewDecoder returns a new decoder for the given configuration. Once +// a decoder has been returned, the same configuration must not be used +// again. +func NewDecoder(config *DecoderConfig) (*Decoder, error) { + val := reflect.ValueOf(config.Result) + if val.Kind() != reflect.Ptr { + return nil, errors.New("result must be a pointer") + } + + val = val.Elem() + if !val.CanAddr() { + return nil, errors.New("result must be addressable (a pointer)") + } + + if config.Metadata != nil { + if config.Metadata.Keys == nil { + config.Metadata.Keys = make([]string, 0) + } + + if config.Metadata.Unused == nil { + config.Metadata.Unused = make([]string, 0) + } + } + + if config.TagName == "" { + config.TagName = "mapstructure" + } + + result := &Decoder{ + config: config, + } + + return result, nil +} + +// Decode decodes the given raw interface to the target pointer specified +// by the configuration. +func (d *Decoder) Decode(input interface{}) error { + return d.decode("", input, reflect.ValueOf(d.config.Result).Elem()) +} + +// Decodes an unknown data type into a specific reflection value. +func (d *Decoder) decode(name string, input interface{}, outVal reflect.Value) error { + var inputVal reflect.Value + if input != nil { + inputVal = reflect.ValueOf(input) + + // We need to check here if input is a typed nil. Typed nils won't + // match the "input == nil" below so we check that here. + if inputVal.Kind() == reflect.Ptr && inputVal.IsNil() { + input = nil + } + } + + if input == nil { + // If the data is nil, then we don't set anything, unless ZeroFields is set + // to true. + if d.config.ZeroFields { + outVal.Set(reflect.Zero(outVal.Type())) + + if d.config.Metadata != nil && name != "" { + d.config.Metadata.Keys = append(d.config.Metadata.Keys, name) + } + } + return nil + } + + if !inputVal.IsValid() { + // If the input value is invalid, then we just set the value + // to be the zero value. + outVal.Set(reflect.Zero(outVal.Type())) + if d.config.Metadata != nil && name != "" { + d.config.Metadata.Keys = append(d.config.Metadata.Keys, name) + } + return nil + } + + if d.config.DecodeHook != nil { + // We have a DecodeHook, so let's pre-process the input. + var err error + input, err = DecodeHookExec(d.config.DecodeHook, inputVal, outVal) + if err != nil { + return fmt.Errorf("error decoding '%s': %s", name, err) + } + } + + var err error + outputKind := getKind(outVal) + addMetaKey := true + switch outputKind { + case reflect.Bool: + err = d.decodeBool(name, input, outVal) + case reflect.Interface: + err = d.decodeBasic(name, input, outVal) + case reflect.String: + err = d.decodeString(name, input, outVal) + case reflect.Int: + err = d.decodeInt(name, input, outVal) + case reflect.Uint: + err = d.decodeUint(name, input, outVal) + case reflect.Float32: + err = d.decodeFloat(name, input, outVal) + case reflect.Struct: + err = d.decodeStruct(name, input, outVal) + case reflect.Map: + err = d.decodeMap(name, input, outVal) + case reflect.Ptr: + addMetaKey, err = d.decodePtr(name, input, outVal) + case reflect.Slice: + err = d.decodeSlice(name, input, outVal) + case reflect.Array: + err = d.decodeArray(name, input, outVal) + case reflect.Func: + err = d.decodeFunc(name, input, outVal) + default: + // If we reached this point then we weren't able to decode it + return fmt.Errorf("%s: unsupported type: %s", name, outputKind) + } + + // If we reached here, then we successfully decoded SOMETHING, so + // mark the key as used if we're tracking metainput. + if addMetaKey && d.config.Metadata != nil && name != "" { + d.config.Metadata.Keys = append(d.config.Metadata.Keys, name) + } + + return err +} + +// This decodes a basic type (bool, int, string, etc.) and sets the +// value to "data" of that type. +func (d *Decoder) decodeBasic(name string, data interface{}, val reflect.Value) error { + if val.IsValid() && val.Elem().IsValid() { + elem := val.Elem() + + // If we can't address this element, then its not writable. Instead, + // we make a copy of the value (which is a pointer and therefore + // writable), decode into that, and replace the whole value. + copied := false + if !elem.CanAddr() { + copied = true + + // Make *T + copy := reflect.New(elem.Type()) + + // *T = elem + copy.Elem().Set(elem) + + // Set elem so we decode into it + elem = copy + } + + // Decode. If we have an error then return. We also return right + // away if we're not a copy because that means we decoded directly. + if err := d.decode(name, data, elem); err != nil || !copied { + return err + } + + // If we're a copy, we need to set te final result + val.Set(elem.Elem()) + return nil + } + + dataVal := reflect.ValueOf(data) + + // If the input data is a pointer, and the assigned type is the dereference + // of that exact pointer, then indirect it so that we can assign it. + // Example: *string to string + if dataVal.Kind() == reflect.Ptr && dataVal.Type().Elem() == val.Type() { + dataVal = reflect.Indirect(dataVal) + } + + if !dataVal.IsValid() { + dataVal = reflect.Zero(val.Type()) + } + + dataValType := dataVal.Type() + if !dataValType.AssignableTo(val.Type()) { + return fmt.Errorf( + "'%s' expected type '%s', got '%s'", + name, val.Type(), dataValType) + } + + val.Set(dataVal) + return nil +} + +func (d *Decoder) decodeString(name string, data interface{}, val reflect.Value) error { + dataVal := reflect.Indirect(reflect.ValueOf(data)) + dataKind := getKind(dataVal) + + converted := true + switch { + case dataKind == reflect.String: + val.SetString(dataVal.String()) + case dataKind == reflect.Bool && d.config.WeaklyTypedInput: + if dataVal.Bool() { + val.SetString("1") + } else { + val.SetString("0") + } + case dataKind == reflect.Int && d.config.WeaklyTypedInput: + val.SetString(strconv.FormatInt(dataVal.Int(), 10)) + case dataKind == reflect.Uint && d.config.WeaklyTypedInput: + val.SetString(strconv.FormatUint(dataVal.Uint(), 10)) + case dataKind == reflect.Float32 && d.config.WeaklyTypedInput: + val.SetString(strconv.FormatFloat(dataVal.Float(), 'f', -1, 64)) + case dataKind == reflect.Slice && d.config.WeaklyTypedInput, + dataKind == reflect.Array && d.config.WeaklyTypedInput: + dataType := dataVal.Type() + elemKind := dataType.Elem().Kind() + switch elemKind { + case reflect.Uint8: + var uints []uint8 + if dataKind == reflect.Array { + uints = make([]uint8, dataVal.Len(), dataVal.Len()) + for i := range uints { + uints[i] = dataVal.Index(i).Interface().(uint8) + } + } else { + uints = dataVal.Interface().([]uint8) + } + val.SetString(string(uints)) + default: + converted = false + } + default: + converted = false + } + + if !converted { + return fmt.Errorf( + "'%s' expected type '%s', got unconvertible type '%s', value: '%v'", + name, val.Type(), dataVal.Type(), data) + } + + return nil +} + +func (d *Decoder) decodeInt(name string, data interface{}, val reflect.Value) error { + dataVal := reflect.Indirect(reflect.ValueOf(data)) + dataKind := getKind(dataVal) + dataType := dataVal.Type() + + switch { + case dataKind == reflect.Int: + val.SetInt(dataVal.Int()) + case dataKind == reflect.Uint: + val.SetInt(int64(dataVal.Uint())) + case dataKind == reflect.Float32: + val.SetInt(int64(dataVal.Float())) + case dataKind == reflect.Bool && d.config.WeaklyTypedInput: + if dataVal.Bool() { + val.SetInt(1) + } else { + val.SetInt(0) + } + case dataKind == reflect.String && d.config.WeaklyTypedInput: + str := dataVal.String() + if str == "" { + str = "0" + } + + i, err := strconv.ParseInt(str, 0, val.Type().Bits()) + if err == nil { + val.SetInt(i) + } else { + return fmt.Errorf("cannot parse '%s' as int: %s", name, err) + } + case dataType.PkgPath() == "encoding/json" && dataType.Name() == "Number": + jn := data.(json.Number) + i, err := jn.Int64() + if err != nil { + return fmt.Errorf( + "error decoding json.Number into %s: %s", name, err) + } + val.SetInt(i) + default: + return fmt.Errorf( + "'%s' expected type '%s', got unconvertible type '%s', value: '%v'", + name, val.Type(), dataVal.Type(), data) + } + + return nil +} + +func (d *Decoder) decodeUint(name string, data interface{}, val reflect.Value) error { + dataVal := reflect.Indirect(reflect.ValueOf(data)) + dataKind := getKind(dataVal) + dataType := dataVal.Type() + + switch { + case dataKind == reflect.Int: + i := dataVal.Int() + if i < 0 && !d.config.WeaklyTypedInput { + return fmt.Errorf("cannot parse '%s', %d overflows uint", + name, i) + } + val.SetUint(uint64(i)) + case dataKind == reflect.Uint: + val.SetUint(dataVal.Uint()) + case dataKind == reflect.Float32: + f := dataVal.Float() + if f < 0 && !d.config.WeaklyTypedInput { + return fmt.Errorf("cannot parse '%s', %f overflows uint", + name, f) + } + val.SetUint(uint64(f)) + case dataKind == reflect.Bool && d.config.WeaklyTypedInput: + if dataVal.Bool() { + val.SetUint(1) + } else { + val.SetUint(0) + } + case dataKind == reflect.String && d.config.WeaklyTypedInput: + str := dataVal.String() + if str == "" { + str = "0" + } + + i, err := strconv.ParseUint(str, 0, val.Type().Bits()) + if err == nil { + val.SetUint(i) + } else { + return fmt.Errorf("cannot parse '%s' as uint: %s", name, err) + } + case dataType.PkgPath() == "encoding/json" && dataType.Name() == "Number": + jn := data.(json.Number) + i, err := jn.Int64() + if err != nil { + return fmt.Errorf( + "error decoding json.Number into %s: %s", name, err) + } + if i < 0 && !d.config.WeaklyTypedInput { + return fmt.Errorf("cannot parse '%s', %d overflows uint", + name, i) + } + val.SetUint(uint64(i)) + default: + return fmt.Errorf( + "'%s' expected type '%s', got unconvertible type '%s', value: '%v'", + name, val.Type(), dataVal.Type(), data) + } + + return nil +} + +func (d *Decoder) decodeBool(name string, data interface{}, val reflect.Value) error { + dataVal := reflect.Indirect(reflect.ValueOf(data)) + dataKind := getKind(dataVal) + + switch { + case dataKind == reflect.Bool: + val.SetBool(dataVal.Bool()) + case dataKind == reflect.Int && d.config.WeaklyTypedInput: + val.SetBool(dataVal.Int() != 0) + case dataKind == reflect.Uint && d.config.WeaklyTypedInput: + val.SetBool(dataVal.Uint() != 0) + case dataKind == reflect.Float32 && d.config.WeaklyTypedInput: + val.SetBool(dataVal.Float() != 0) + case dataKind == reflect.String && d.config.WeaklyTypedInput: + b, err := strconv.ParseBool(dataVal.String()) + if err == nil { + val.SetBool(b) + } else if dataVal.String() == "" { + val.SetBool(false) + } else { + return fmt.Errorf("cannot parse '%s' as bool: %s", name, err) + } + default: + return fmt.Errorf( + "'%s' expected type '%s', got unconvertible type '%s', value: '%v'", + name, val.Type(), dataVal.Type(), data) + } + + return nil +} + +func (d *Decoder) decodeFloat(name string, data interface{}, val reflect.Value) error { + dataVal := reflect.Indirect(reflect.ValueOf(data)) + dataKind := getKind(dataVal) + dataType := dataVal.Type() + + switch { + case dataKind == reflect.Int: + val.SetFloat(float64(dataVal.Int())) + case dataKind == reflect.Uint: + val.SetFloat(float64(dataVal.Uint())) + case dataKind == reflect.Float32: + val.SetFloat(dataVal.Float()) + case dataKind == reflect.Bool && d.config.WeaklyTypedInput: + if dataVal.Bool() { + val.SetFloat(1) + } else { + val.SetFloat(0) + } + case dataKind == reflect.String && d.config.WeaklyTypedInput: + str := dataVal.String() + if str == "" { + str = "0" + } + + f, err := strconv.ParseFloat(str, val.Type().Bits()) + if err == nil { + val.SetFloat(f) + } else { + return fmt.Errorf("cannot parse '%s' as float: %s", name, err) + } + case dataType.PkgPath() == "encoding/json" && dataType.Name() == "Number": + jn := data.(json.Number) + i, err := jn.Float64() + if err != nil { + return fmt.Errorf( + "error decoding json.Number into %s: %s", name, err) + } + val.SetFloat(i) + default: + return fmt.Errorf( + "'%s' expected type '%s', got unconvertible type '%s', value: '%v'", + name, val.Type(), dataVal.Type(), data) + } + + return nil +} + +func (d *Decoder) decodeMap(name string, data interface{}, val reflect.Value) error { + valType := val.Type() + valKeyType := valType.Key() + valElemType := valType.Elem() + + // By default we overwrite keys in the current map + valMap := val + + // If the map is nil or we're purposely zeroing fields, make a new map + if valMap.IsNil() || d.config.ZeroFields { + // Make a new map to hold our result + mapType := reflect.MapOf(valKeyType, valElemType) + valMap = reflect.MakeMap(mapType) + } + + // Check input type and based on the input type jump to the proper func + dataVal := reflect.Indirect(reflect.ValueOf(data)) + switch dataVal.Kind() { + case reflect.Map: + return d.decodeMapFromMap(name, dataVal, val, valMap) + + case reflect.Struct: + return d.decodeMapFromStruct(name, dataVal, val, valMap) + + case reflect.Array, reflect.Slice: + if d.config.WeaklyTypedInput { + return d.decodeMapFromSlice(name, dataVal, val, valMap) + } + + fallthrough + + default: + return fmt.Errorf("'%s' expected a map, got '%s'", name, dataVal.Kind()) + } +} + +func (d *Decoder) decodeMapFromSlice(name string, dataVal reflect.Value, val reflect.Value, valMap reflect.Value) error { + // Special case for BC reasons (covered by tests) + if dataVal.Len() == 0 { + val.Set(valMap) + return nil + } + + for i := 0; i < dataVal.Len(); i++ { + err := d.decode( + name+"["+strconv.Itoa(i)+"]", + dataVal.Index(i).Interface(), val) + if err != nil { + return err + } + } + + return nil +} + +func (d *Decoder) decodeMapFromMap(name string, dataVal reflect.Value, val reflect.Value, valMap reflect.Value) error { + valType := val.Type() + valKeyType := valType.Key() + valElemType := valType.Elem() + + // Accumulate errors + errors := make([]string, 0) + + // If the input data is empty, then we just match what the input data is. + if dataVal.Len() == 0 { + if dataVal.IsNil() { + if !val.IsNil() { + val.Set(dataVal) + } + } else { + // Set to empty allocated value + val.Set(valMap) + } + + return nil + } + + for _, k := range dataVal.MapKeys() { + fieldName := name + "[" + k.String() + "]" + + // First decode the key into the proper type + currentKey := reflect.Indirect(reflect.New(valKeyType)) + if err := d.decode(fieldName, k.Interface(), currentKey); err != nil { + errors = appendErrors(errors, err) + continue + } + + // Next decode the data into the proper type + v := dataVal.MapIndex(k).Interface() + currentVal := reflect.Indirect(reflect.New(valElemType)) + if err := d.decode(fieldName, v, currentVal); err != nil { + errors = appendErrors(errors, err) + continue + } + + valMap.SetMapIndex(currentKey, currentVal) + } + + // Set the built up map to the value + val.Set(valMap) + + // If we had errors, return those + if len(errors) > 0 { + return &Error{errors} + } + + return nil +} + +func (d *Decoder) decodeMapFromStruct(name string, dataVal reflect.Value, val reflect.Value, valMap reflect.Value) error { + typ := dataVal.Type() + for i := 0; i < typ.NumField(); i++ { + // Get the StructField first since this is a cheap operation. If the + // field is unexported, then ignore it. + f := typ.Field(i) + if f.PkgPath != "" { + continue + } + + // Next get the actual value of this field and verify it is assignable + // to the map value. + v := dataVal.Field(i) + if !v.Type().AssignableTo(valMap.Type().Elem()) { + return fmt.Errorf("cannot assign type '%s' to map value field of type '%s'", v.Type(), valMap.Type().Elem()) + } + + tagValue := f.Tag.Get(d.config.TagName) + keyName := f.Name + + // If Squash is set in the config, we squash the field down. + squash := d.config.Squash && v.Kind() == reflect.Struct && f.Anonymous + + // Determine the name of the key in the map + if index := strings.Index(tagValue, ","); index != -1 { + if tagValue[:index] == "-" { + continue + } + // If "omitempty" is specified in the tag, it ignores empty values. + if strings.Index(tagValue[index+1:], "omitempty") != -1 && isEmptyValue(v) { + continue + } + + // If "squash" is specified in the tag, we squash the field down. + squash = !squash && strings.Index(tagValue[index+1:], "squash") != -1 + if squash { + // When squashing, the embedded type can be a pointer to a struct. + if v.Kind() == reflect.Ptr && v.Elem().Kind() == reflect.Struct { + v = v.Elem() + } + + // The final type must be a struct + if v.Kind() != reflect.Struct { + return fmt.Errorf("cannot squash non-struct type '%s'", v.Type()) + } + } + keyName = tagValue[:index] + } else if len(tagValue) > 0 { + if tagValue == "-" { + continue + } + keyName = tagValue + } + + switch v.Kind() { + // this is an embedded struct, so handle it differently + case reflect.Struct: + x := reflect.New(v.Type()) + x.Elem().Set(v) + + vType := valMap.Type() + vKeyType := vType.Key() + vElemType := vType.Elem() + mType := reflect.MapOf(vKeyType, vElemType) + vMap := reflect.MakeMap(mType) + + // Creating a pointer to a map so that other methods can completely + // overwrite the map if need be (looking at you decodeMapFromMap). The + // indirection allows the underlying map to be settable (CanSet() == true) + // where as reflect.MakeMap returns an unsettable map. + addrVal := reflect.New(vMap.Type()) + reflect.Indirect(addrVal).Set(vMap) + + err := d.decode(keyName, x.Interface(), reflect.Indirect(addrVal)) + if err != nil { + return err + } + + // the underlying map may have been completely overwritten so pull + // it indirectly out of the enclosing value. + vMap = reflect.Indirect(addrVal) + + if squash { + for _, k := range vMap.MapKeys() { + valMap.SetMapIndex(k, vMap.MapIndex(k)) + } + } else { + valMap.SetMapIndex(reflect.ValueOf(keyName), vMap) + } + + default: + valMap.SetMapIndex(reflect.ValueOf(keyName), v) + } + } + + if val.CanAddr() { + val.Set(valMap) + } + + return nil +} + +func (d *Decoder) decodePtr(name string, data interface{}, val reflect.Value) (bool, error) { + // If the input data is nil, then we want to just set the output + // pointer to be nil as well. + isNil := data == nil + if !isNil { + switch v := reflect.Indirect(reflect.ValueOf(data)); v.Kind() { + case reflect.Chan, + reflect.Func, + reflect.Interface, + reflect.Map, + reflect.Ptr, + reflect.Slice: + isNil = v.IsNil() + } + } + if isNil { + if !val.IsNil() && val.CanSet() { + nilValue := reflect.New(val.Type()).Elem() + val.Set(nilValue) + } + + return true, nil + } + + // Create an element of the concrete (non pointer) type and decode + // into that. Then set the value of the pointer to this type. + valType := val.Type() + valElemType := valType.Elem() + if val.CanSet() { + realVal := val + if realVal.IsNil() || d.config.ZeroFields { + realVal = reflect.New(valElemType) + } + + if err := d.decode(name, data, reflect.Indirect(realVal)); err != nil { + return false, err + } + + val.Set(realVal) + } else { + if err := d.decode(name, data, reflect.Indirect(val)); err != nil { + return false, err + } + } + return false, nil +} + +func (d *Decoder) decodeFunc(name string, data interface{}, val reflect.Value) error { + // Create an element of the concrete (non pointer) type and decode + // into that. Then set the value of the pointer to this type. + dataVal := reflect.Indirect(reflect.ValueOf(data)) + if val.Type() != dataVal.Type() { + return fmt.Errorf( + "'%s' expected type '%s', got unconvertible type '%s', value: '%v'", + name, val.Type(), dataVal.Type(), data) + } + val.Set(dataVal) + return nil +} + +func (d *Decoder) decodeSlice(name string, data interface{}, val reflect.Value) error { + dataVal := reflect.Indirect(reflect.ValueOf(data)) + dataValKind := dataVal.Kind() + valType := val.Type() + valElemType := valType.Elem() + sliceType := reflect.SliceOf(valElemType) + + // If we have a non array/slice type then we first attempt to convert. + if dataValKind != reflect.Array && dataValKind != reflect.Slice { + if d.config.WeaklyTypedInput { + switch { + // Slice and array we use the normal logic + case dataValKind == reflect.Slice, dataValKind == reflect.Array: + break + + // Empty maps turn into empty slices + case dataValKind == reflect.Map: + if dataVal.Len() == 0 { + val.Set(reflect.MakeSlice(sliceType, 0, 0)) + return nil + } + // Create slice of maps of other sizes + return d.decodeSlice(name, []interface{}{data}, val) + + case dataValKind == reflect.String && valElemType.Kind() == reflect.Uint8: + return d.decodeSlice(name, []byte(dataVal.String()), val) + + // All other types we try to convert to the slice type + // and "lift" it into it. i.e. a string becomes a string slice. + default: + // Just re-try this function with data as a slice. + return d.decodeSlice(name, []interface{}{data}, val) + } + } + + return fmt.Errorf( + "'%s': source data must be an array or slice, got %s", name, dataValKind) + } + + // If the input value is nil, then don't allocate since empty != nil + if dataVal.IsNil() { + return nil + } + + valSlice := val + if valSlice.IsNil() || d.config.ZeroFields { + // Make a new slice to hold our result, same size as the original data. + valSlice = reflect.MakeSlice(sliceType, dataVal.Len(), dataVal.Len()) + } + + // Accumulate any errors + errors := make([]string, 0) + + for i := 0; i < dataVal.Len(); i++ { + currentData := dataVal.Index(i).Interface() + for valSlice.Len() <= i { + valSlice = reflect.Append(valSlice, reflect.Zero(valElemType)) + } + currentField := valSlice.Index(i) + + fieldName := name + "[" + strconv.Itoa(i) + "]" + if err := d.decode(fieldName, currentData, currentField); err != nil { + errors = appendErrors(errors, err) + } + } + + // Finally, set the value to the slice we built up + val.Set(valSlice) + + // If there were errors, we return those + if len(errors) > 0 { + return &Error{errors} + } + + return nil +} + +func (d *Decoder) decodeArray(name string, data interface{}, val reflect.Value) error { + dataVal := reflect.Indirect(reflect.ValueOf(data)) + dataValKind := dataVal.Kind() + valType := val.Type() + valElemType := valType.Elem() + arrayType := reflect.ArrayOf(valType.Len(), valElemType) + + valArray := val + + if valArray.Interface() == reflect.Zero(valArray.Type()).Interface() || d.config.ZeroFields { + // Check input type + if dataValKind != reflect.Array && dataValKind != reflect.Slice { + if d.config.WeaklyTypedInput { + switch { + // Empty maps turn into empty arrays + case dataValKind == reflect.Map: + if dataVal.Len() == 0 { + val.Set(reflect.Zero(arrayType)) + return nil + } + + // All other types we try to convert to the array type + // and "lift" it into it. i.e. a string becomes a string array. + default: + // Just re-try this function with data as a slice. + return d.decodeArray(name, []interface{}{data}, val) + } + } + + return fmt.Errorf( + "'%s': source data must be an array or slice, got %s", name, dataValKind) + + } + if dataVal.Len() > arrayType.Len() { + return fmt.Errorf( + "'%s': expected source data to have length less or equal to %d, got %d", name, arrayType.Len(), dataVal.Len()) + + } + + // Make a new array to hold our result, same size as the original data. + valArray = reflect.New(arrayType).Elem() + } + + // Accumulate any errors + errors := make([]string, 0) + + for i := 0; i < dataVal.Len(); i++ { + currentData := dataVal.Index(i).Interface() + currentField := valArray.Index(i) + + fieldName := name + "[" + strconv.Itoa(i) + "]" + if err := d.decode(fieldName, currentData, currentField); err != nil { + errors = appendErrors(errors, err) + } + } + + // Finally, set the value to the array we built up + val.Set(valArray) + + // If there were errors, we return those + if len(errors) > 0 { + return &Error{errors} + } + + return nil +} + +func (d *Decoder) decodeStruct(name string, data interface{}, val reflect.Value) error { + dataVal := reflect.Indirect(reflect.ValueOf(data)) + + // If the type of the value to write to and the data match directly, + // then we just set it directly instead of recursing into the structure. + if dataVal.Type() == val.Type() { + val.Set(dataVal) + return nil + } + + dataValKind := dataVal.Kind() + switch dataValKind { + case reflect.Map: + return d.decodeStructFromMap(name, dataVal, val) + + case reflect.Struct: + // Not the most efficient way to do this but we can optimize later if + // we want to. To convert from struct to struct we go to map first + // as an intermediary. + + // Make a new map to hold our result + mapType := reflect.TypeOf((map[string]interface{})(nil)) + mval := reflect.MakeMap(mapType) + + // Creating a pointer to a map so that other methods can completely + // overwrite the map if need be (looking at you decodeMapFromMap). The + // indirection allows the underlying map to be settable (CanSet() == true) + // where as reflect.MakeMap returns an unsettable map. + addrVal := reflect.New(mval.Type()) + + reflect.Indirect(addrVal).Set(mval) + if err := d.decodeMapFromStruct(name, dataVal, reflect.Indirect(addrVal), mval); err != nil { + return err + } + + result := d.decodeStructFromMap(name, reflect.Indirect(addrVal), val) + return result + + default: + return fmt.Errorf("'%s' expected a map, got '%s'", name, dataVal.Kind()) + } +} + +func (d *Decoder) decodeStructFromMap(name string, dataVal, val reflect.Value) error { + dataValType := dataVal.Type() + if kind := dataValType.Key().Kind(); kind != reflect.String && kind != reflect.Interface { + return fmt.Errorf( + "'%s' needs a map with string keys, has '%s' keys", + name, dataValType.Key().Kind()) + } + + dataValKeys := make(map[reflect.Value]struct{}) + dataValKeysUnused := make(map[interface{}]struct{}) + for _, dataValKey := range dataVal.MapKeys() { + dataValKeys[dataValKey] = struct{}{} + dataValKeysUnused[dataValKey.Interface()] = struct{}{} + } + + errors := make([]string, 0) + + // This slice will keep track of all the structs we'll be decoding. + // There can be more than one struct if there are embedded structs + // that are squashed. + structs := make([]reflect.Value, 1, 5) + structs[0] = val + + // Compile the list of all the fields that we're going to be decoding + // from all the structs. + type field struct { + field reflect.StructField + val reflect.Value + } + + // remainField is set to a valid field set with the "remain" tag if + // we are keeping track of remaining values. + var remainField *field + + fields := []field{} + for len(structs) > 0 { + structVal := structs[0] + structs = structs[1:] + + structType := structVal.Type() + + for i := 0; i < structType.NumField(); i++ { + fieldType := structType.Field(i) + fieldVal := structVal.Field(i) + if fieldVal.Kind() == reflect.Ptr && fieldVal.Elem().Kind() == reflect.Struct { + // Handle embedded struct pointers as embedded structs. + fieldVal = fieldVal.Elem() + } + + // If "squash" is specified in the tag, we squash the field down. + squash := d.config.Squash && fieldVal.Kind() == reflect.Struct && fieldType.Anonymous + remain := false + + // We always parse the tags cause we're looking for other tags too + tagParts := strings.Split(fieldType.Tag.Get(d.config.TagName), ",") + for _, tag := range tagParts[1:] { + if tag == "squash" { + squash = true + break + } + + if tag == "remain" { + remain = true + break + } + } + + if squash { + if fieldVal.Kind() != reflect.Struct { + errors = appendErrors(errors, + fmt.Errorf("%s: unsupported type for squash: %s", fieldType.Name, fieldVal.Kind())) + } else { + structs = append(structs, fieldVal) + } + continue + } + + // Build our field + if remain { + remainField = &field{fieldType, fieldVal} + } else { + // Normal struct field, store it away + fields = append(fields, field{fieldType, fieldVal}) + } + } + } + + // for fieldType, field := range fields { + for _, f := range fields { + field, fieldValue := f.field, f.val + fieldName := field.Name + + tagValue := field.Tag.Get(d.config.TagName) + tagValue = strings.SplitN(tagValue, ",", 2)[0] + if tagValue != "" { + fieldName = tagValue + } + + rawMapKey := reflect.ValueOf(fieldName) + rawMapVal := dataVal.MapIndex(rawMapKey) + if !rawMapVal.IsValid() { + // Do a slower search by iterating over each key and + // doing case-insensitive search. + for dataValKey := range dataValKeys { + mK, ok := dataValKey.Interface().(string) + if !ok { + // Not a string key + continue + } + + if strings.EqualFold(mK, fieldName) { + rawMapKey = dataValKey + rawMapVal = dataVal.MapIndex(dataValKey) + break + } + } + + if !rawMapVal.IsValid() { + // There was no matching key in the map for the value in + // the struct. Just ignore. + continue + } + } + + if !fieldValue.IsValid() { + // This should never happen + panic("field is not valid") + } + + // If we can't set the field, then it is unexported or something, + // and we just continue onwards. + if !fieldValue.CanSet() { + continue + } + + // Delete the key we're using from the unused map so we stop tracking + delete(dataValKeysUnused, rawMapKey.Interface()) + + // If the name is empty string, then we're at the root, and we + // don't dot-join the fields. + if name != "" { + fieldName = name + "." + fieldName + } + + if err := d.decode(fieldName, rawMapVal.Interface(), fieldValue); err != nil { + errors = appendErrors(errors, err) + } + } + + // If we have a "remain"-tagged field and we have unused keys then + // we put the unused keys directly into the remain field. + if remainField != nil && len(dataValKeysUnused) > 0 { + // Build a map of only the unused values + remain := map[interface{}]interface{}{} + for key := range dataValKeysUnused { + remain[key] = dataVal.MapIndex(reflect.ValueOf(key)).Interface() + } + + // Decode it as-if we were just decoding this map onto our map. + if err := d.decodeMap(name, remain, remainField.val); err != nil { + errors = appendErrors(errors, err) + } + + // Set the map to nil so we have none so that the next check will + // not error (ErrorUnused) + dataValKeysUnused = nil + } + + if d.config.ErrorUnused && len(dataValKeysUnused) > 0 { + keys := make([]string, 0, len(dataValKeysUnused)) + for rawKey := range dataValKeysUnused { + keys = append(keys, rawKey.(string)) + } + sort.Strings(keys) + + err := fmt.Errorf("'%s' has invalid keys: %s", name, strings.Join(keys, ", ")) + errors = appendErrors(errors, err) + } + + if len(errors) > 0 { + return &Error{errors} + } + + // Add the unused keys to the list of unused keys if we're tracking metadata + if d.config.Metadata != nil { + for rawKey := range dataValKeysUnused { + key := rawKey.(string) + if name != "" { + key = name + "." + key + } + + d.config.Metadata.Unused = append(d.config.Metadata.Unused, key) + } + } + + return nil +} + +func isEmptyValue(v reflect.Value) bool { + switch getKind(v) { + case reflect.Array, reflect.Map, reflect.Slice, reflect.String: + return v.Len() == 0 + case reflect.Bool: + return !v.Bool() + case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: + return v.Int() == 0 + case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uintptr: + return v.Uint() == 0 + case reflect.Float32, reflect.Float64: + return v.Float() == 0 + case reflect.Interface, reflect.Ptr: + return v.IsNil() + } + return false +} + +func getKind(val reflect.Value) reflect.Kind { + kind := val.Kind() + + switch { + case kind >= reflect.Int && kind <= reflect.Int64: + return reflect.Int + case kind >= reflect.Uint && kind <= reflect.Uint64: + return reflect.Uint + case kind >= reflect.Float32 && kind <= reflect.Float64: + return reflect.Float32 + default: + return kind + } +} diff --git a/vendor/github.com/spf13/cobra/.travis.yml b/vendor/github.com/spf13/cobra/.travis.yml deleted file mode 100644 index e0a3b5004..000000000 --- a/vendor/github.com/spf13/cobra/.travis.yml +++ /dev/null @@ -1,28 +0,0 @@ -language: go - -stages: - - test - - build - -go: - - 1.12.x - - 1.13.x - - tip - -env: GO111MODULE=on - -before_install: - - go get -u github.com/kyoh86/richgo - - go get -u github.com/mitchellh/gox - - curl -sfL https://raw.githubusercontent.com/golangci/golangci-lint/master/install.sh | sh -s -- -b $(go env GOPATH)/bin latest - -matrix: - allow_failures: - - go: tip - include: - - stage: build - go: 1.13.x - script: make cobra_generator - -script: - - make test diff --git a/vendor/github.com/spf13/cobra/README.md b/vendor/github.com/spf13/cobra/README.md index a1b13ddda..074e3979f 100644 --- a/vendor/github.com/spf13/cobra/README.md +++ b/vendor/github.com/spf13/cobra/README.md @@ -7,7 +7,6 @@ Cobra is used in many Go projects such as [Kubernetes](http://kubernetes.io/), name a few. [This list](./projects_using_cobra.md) contains a more extensive list of projects using Cobra. [![](https://img.shields.io/github/workflow/status/spf13/cobra/Test?longCache=tru&label=Test&logo=github%20actions&logoColor=fff)](https://github.com/spf13/cobra/actions?query=workflow%3ATest) -[![Build Status](https://travis-ci.org/spf13/cobra.svg "Travis CI status")](https://travis-ci.org/spf13/cobra) [![GoDoc](https://godoc.org/github.com/spf13/cobra?status.svg)](https://godoc.org/github.com/spf13/cobra) [![Go Report Card](https://goreportcard.com/badge/github.com/spf13/cobra)](https://goreportcard.com/report/github.com/spf13/cobra) [![Slack](https://img.shields.io/badge/Slack-cobra-brightgreen)](https://gophers.slack.com/archives/CD3LP1199) @@ -19,18 +18,18 @@ name a few. [This list](./projects_using_cobra.md) contains a more extensive lis * [Commands](#commands) * [Flags](#flags) - [Installing](#installing) -- [Getting Started](#getting-started) - * [Using the Cobra Generator](#using-the-cobra-generator) - * [Using the Cobra Library](#using-the-cobra-library) - * [Working with Flags](#working-with-flags) - * [Positional and Custom Arguments](#positional-and-custom-arguments) - * [Example](#example) - * [Help Command](#help-command) - * [Usage Message](#usage-message) - * [PreRun and PostRun Hooks](#prerun-and-postrun-hooks) - * [Suggestions when "unknown command" happens](#suggestions-when-unknown-command-happens) - * [Generating documentation for your command](#generating-documentation-for-your-command) - * [Generating shell completions](#generating-shell-completions) +- [Usage](#usage) + * [Using the Cobra Generator](user_guide.md#using-the-cobra-generator) + * [Using the Cobra Library](user_guide.md#using-the-cobra-library) + * [Working with Flags](user_guide.md#working-with-flags) + * [Positional and Custom Arguments](user_guide.md#positional-and-custom-arguments) + * [Example](user_guide.md#example) + * [Help Command](user_guide.md#help-command) + * [Usage Message](user_guide.md#usage-message) + * [PreRun and PostRun Hooks](user_guide.md#prerun-and-postrun-hooks) + * [Suggestions when "unknown command" happens](user_guide.md#suggestions-when-unknown-command-happens) + * [Generating documentation for your command](user_guide.md#generating-documentation-for-your-command) + * [Generating shell completions](user_guide.md#generating-shell-completions) - [Contributing](CONTRIBUTING.md) - [License](#license) @@ -117,643 +116,9 @@ Next, include Cobra in your application: import "github.com/spf13/cobra" ``` -# Getting Started +# Usage -While you are welcome to provide your own organization, typically a Cobra-based -application will follow the following organizational structure: - -``` - ▾ appName/ - ▾ cmd/ - add.go - your.go - commands.go - here.go - main.go -``` - -In a Cobra app, typically the main.go file is very bare. It serves one purpose: initializing Cobra. - -```go -package main - -import ( - "{pathToYourApp}/cmd" -) - -func main() { - cmd.Execute() -} -``` - -## Using the Cobra Generator - -Cobra provides its own program that will create your application and add any -commands you want. It's the easiest way to incorporate Cobra into your application. - -[Here](https://github.com/spf13/cobra/blob/master/cobra/README.md) you can find more information about it. - -## Using the Cobra Library - -To manually implement Cobra you need to create a bare main.go file and a rootCmd file. -You will optionally provide additional commands as you see fit. - -### Create rootCmd - -Cobra doesn't require any special constructors. Simply create your commands. - -Ideally you place this in app/cmd/root.go: - -```go -var rootCmd = &cobra.Command{ - Use: "hugo", - Short: "Hugo is a very fast static site generator", - Long: `A Fast and Flexible Static Site Generator built with - love by spf13 and friends in Go. - Complete documentation is available at http://hugo.spf13.com`, - Run: func(cmd *cobra.Command, args []string) { - // Do Stuff Here - }, -} - -func Execute() { - if err := rootCmd.Execute(); err != nil { - fmt.Fprintln(os.Stderr, err) - os.Exit(1) - } -} -``` - -You will additionally define flags and handle configuration in your init() function. - -For example cmd/root.go: - -```go -package cmd - -import ( - "fmt" - "os" - - homedir "github.com/mitchellh/go-homedir" - "github.com/spf13/cobra" - "github.com/spf13/viper" -) - -var ( - // Used for flags. - cfgFile string - userLicense string - - rootCmd = &cobra.Command{ - Use: "cobra", - Short: "A generator for Cobra based Applications", - Long: `Cobra is a CLI library for Go that empowers applications. -This application is a tool to generate the needed files -to quickly create a Cobra application.`, - } -) - -// Execute executes the root command. -func Execute() error { - return rootCmd.Execute() -} - -func init() { - cobra.OnInitialize(initConfig) - - rootCmd.PersistentFlags().StringVar(&cfgFile, "config", "", "config file (default is $HOME/.cobra.yaml)") - rootCmd.PersistentFlags().StringP("author", "a", "YOUR NAME", "author name for copyright attribution") - rootCmd.PersistentFlags().StringVarP(&userLicense, "license", "l", "", "name of license for the project") - rootCmd.PersistentFlags().Bool("viper", true, "use Viper for configuration") - viper.BindPFlag("author", rootCmd.PersistentFlags().Lookup("author")) - viper.BindPFlag("useViper", rootCmd.PersistentFlags().Lookup("viper")) - viper.SetDefault("author", "NAME HERE <EMAIL ADDRESS>") - viper.SetDefault("license", "apache") - - rootCmd.AddCommand(addCmd) - rootCmd.AddCommand(initCmd) -} - -func initConfig() { - if cfgFile != "" { - // Use config file from the flag. - viper.SetConfigFile(cfgFile) - } else { - // Find home directory. - home, err := homedir.Dir() - cobra.CheckErr(err) - - // Search config in home directory with name ".cobra" (without extension). - viper.AddConfigPath(home) - viper.SetConfigName(".cobra") - } - - viper.AutomaticEnv() - - if err := viper.ReadInConfig(); err == nil { - fmt.Println("Using config file:", viper.ConfigFileUsed()) - } -} -``` - -### Create your main.go - -With the root command you need to have your main function execute it. -Execute should be run on the root for clarity, though it can be called on any command. - -In a Cobra app, typically the main.go file is very bare. It serves one purpose: to initialize Cobra. - -```go -package main - -import ( - "{pathToYourApp}/cmd" -) - -func main() { - cmd.Execute() -} -``` - -### Create additional commands - -Additional commands can be defined and typically are each given their own file -inside of the cmd/ directory. - -If you wanted to create a version command you would create cmd/version.go and -populate it with the following: - -```go -package cmd - -import ( - "fmt" - - "github.com/spf13/cobra" -) - -func init() { - rootCmd.AddCommand(versionCmd) -} - -var versionCmd = &cobra.Command{ - Use: "version", - Short: "Print the version number of Hugo", - Long: `All software has versions. This is Hugo's`, - Run: func(cmd *cobra.Command, args []string) { - fmt.Println("Hugo Static Site Generator v0.9 -- HEAD") - }, -} -``` - -### Returning and handling errors - -If you wish to return an error to the caller of a command, `RunE` can be used. - -```go -package cmd - -import ( - "fmt" - - "github.com/spf13/cobra" -) - -func init() { - rootCmd.AddCommand(tryCmd) -} - -var tryCmd = &cobra.Command{ - Use: "try", - Short: "Try and possibly fail at something", - RunE: func(cmd *cobra.Command, args []string) error { - if err := someFunc(); err != nil { - return err - } - return nil - }, -} -``` - -The error can then be caught at the execute function call. - -## Working with Flags - -Flags provide modifiers to control how the action command operates. - -### Assign flags to a command - -Since the flags are defined and used in different locations, we need to -define a variable outside with the correct scope to assign the flag to -work with. - -```go -var Verbose bool -var Source string -``` - -There are two different approaches to assign a flag. - -### Persistent Flags - -A flag can be 'persistent', meaning that this flag will be available to the -command it's assigned to as well as every command under that command. For -global flags, assign a flag as a persistent flag on the root. - -```go -rootCmd.PersistentFlags().BoolVarP(&Verbose, "verbose", "v", false, "verbose output") -``` - -### Local Flags - -A flag can also be assigned locally, which will only apply to that specific command. - -```go -localCmd.Flags().StringVarP(&Source, "source", "s", "", "Source directory to read from") -``` - -### Local Flag on Parent Commands - -By default, Cobra only parses local flags on the target command, and any local flags on -parent commands are ignored. By enabling `Command.TraverseChildren`, Cobra will -parse local flags on each command before executing the target command. - -```go -command := cobra.Command{ - Use: "print [OPTIONS] [COMMANDS]", - TraverseChildren: true, -} -``` - -### Bind Flags with Config - -You can also bind your flags with [viper](https://github.com/spf13/viper): -```go -var author string - -func init() { - rootCmd.PersistentFlags().StringVar(&author, "author", "YOUR NAME", "Author name for copyright attribution") - viper.BindPFlag("author", rootCmd.PersistentFlags().Lookup("author")) -} -``` - -In this example, the persistent flag `author` is bound with `viper`. -**Note**: the variable `author` will not be set to the value from config, -when the `--author` flag is not provided by user. - -More in [viper documentation](https://github.com/spf13/viper#working-with-flags). - -### Required flags - -Flags are optional by default. If instead you wish your command to report an error -when a flag has not been set, mark it as required: -```go -rootCmd.Flags().StringVarP(&Region, "region", "r", "", "AWS region (required)") -rootCmd.MarkFlagRequired("region") -``` - -Or, for persistent flags: -```go -rootCmd.PersistentFlags().StringVarP(&Region, "region", "r", "", "AWS region (required)") -rootCmd.MarkPersistentFlagRequired("region") -``` - -## Positional and Custom Arguments - -Validation of positional arguments can be specified using the `Args` field -of `Command`. - -The following validators are built in: - -- `NoArgs` - the command will report an error if there are any positional args. -- `ArbitraryArgs` - the command will accept any args. -- `OnlyValidArgs` - the command will report an error if there are any positional args that are not in the `ValidArgs` field of `Command`. -- `MinimumNArgs(int)` - the command will report an error if there are not at least N positional args. -- `MaximumNArgs(int)` - the command will report an error if there are more than N positional args. -- `ExactArgs(int)` - the command will report an error if there are not exactly N positional args. -- `ExactValidArgs(int)` - the command will report an error if there are not exactly N positional args OR if there are any positional args that are not in the `ValidArgs` field of `Command` -- `RangeArgs(min, max)` - the command will report an error if the number of args is not between the minimum and maximum number of expected args. - -An example of setting the custom validator: - -```go -var cmd = &cobra.Command{ - Short: "hello", - Args: func(cmd *cobra.Command, args []string) error { - if len(args) < 1 { - return errors.New("requires a color argument") - } - if myapp.IsValidColor(args[0]) { - return nil - } - return fmt.Errorf("invalid color specified: %s", args[0]) - }, - Run: func(cmd *cobra.Command, args []string) { - fmt.Println("Hello, World!") - }, -} -``` - -## Example - -In the example below, we have defined three commands. Two are at the top level -and one (cmdTimes) is a child of one of the top commands. In this case the root -is not executable, meaning that a subcommand is required. This is accomplished -by not providing a 'Run' for the 'rootCmd'. - -We have only defined one flag for a single command. - -More documentation about flags is available at https://github.com/spf13/pflag - -```go -package main - -import ( - "fmt" - "strings" - - "github.com/spf13/cobra" -) - -func main() { - var echoTimes int - - var cmdPrint = &cobra.Command{ - Use: "print [string to print]", - Short: "Print anything to the screen", - Long: `print is for printing anything back to the screen. -For many years people have printed back to the screen.`, - Args: cobra.MinimumNArgs(1), - Run: func(cmd *cobra.Command, args []string) { - fmt.Println("Print: " + strings.Join(args, " ")) - }, - } - - var cmdEcho = &cobra.Command{ - Use: "echo [string to echo]", - Short: "Echo anything to the screen", - Long: `echo is for echoing anything back. -Echo works a lot like print, except it has a child command.`, - Args: cobra.MinimumNArgs(1), - Run: func(cmd *cobra.Command, args []string) { - fmt.Println("Echo: " + strings.Join(args, " ")) - }, - } - - var cmdTimes = &cobra.Command{ - Use: "times [string to echo]", - Short: "Echo anything to the screen more times", - Long: `echo things multiple times back to the user by providing -a count and a string.`, - Args: cobra.MinimumNArgs(1), - Run: func(cmd *cobra.Command, args []string) { - for i := 0; i < echoTimes; i++ { - fmt.Println("Echo: " + strings.Join(args, " ")) - } - }, - } - - cmdTimes.Flags().IntVarP(&echoTimes, "times", "t", 1, "times to echo the input") - - var rootCmd = &cobra.Command{Use: "app"} - rootCmd.AddCommand(cmdPrint, cmdEcho) - cmdEcho.AddCommand(cmdTimes) - rootCmd.Execute() -} -``` - -For a more complete example of a larger application, please checkout [Hugo](http://gohugo.io/). - -## Help Command - -Cobra automatically adds a help command to your application when you have subcommands. -This will be called when a user runs 'app help'. Additionally, help will also -support all other commands as input. Say, for instance, you have a command called -'create' without any additional configuration; Cobra will work when 'app help -create' is called. Every command will automatically have the '--help' flag added. - -### Example - -The following output is automatically generated by Cobra. Nothing beyond the -command and flag definitions are needed. - - $ cobra help - - Cobra is a CLI library for Go that empowers applications. - This application is a tool to generate the needed files - to quickly create a Cobra application. - - Usage: - cobra [command] - - Available Commands: - add Add a command to a Cobra Application - help Help about any command - init Initialize a Cobra Application - - Flags: - -a, --author string author name for copyright attribution (default "YOUR NAME") - --config string config file (default is $HOME/.cobra.yaml) - -h, --help help for cobra - -l, --license string name of license for the project - --viper use Viper for configuration (default true) - - Use "cobra [command] --help" for more information about a command. - - -Help is just a command like any other. There is no special logic or behavior -around it. In fact, you can provide your own if you want. - -### Defining your own help - -You can provide your own Help command or your own template for the default command to use -with following functions: - -```go -cmd.SetHelpCommand(cmd *Command) -cmd.SetHelpFunc(f func(*Command, []string)) -cmd.SetHelpTemplate(s string) -``` - -The latter two will also apply to any children commands. - -## Usage Message - -When the user provides an invalid flag or invalid command, Cobra responds by -showing the user the 'usage'. - -### Example -You may recognize this from the help above. That's because the default help -embeds the usage as part of its output. - - $ cobra --invalid - Error: unknown flag: --invalid - Usage: - cobra [command] - - Available Commands: - add Add a command to a Cobra Application - help Help about any command - init Initialize a Cobra Application - - Flags: - -a, --author string author name for copyright attribution (default "YOUR NAME") - --config string config file (default is $HOME/.cobra.yaml) - -h, --help help for cobra - -l, --license string name of license for the project - --viper use Viper for configuration (default true) - - Use "cobra [command] --help" for more information about a command. - -### Defining your own usage -You can provide your own usage function or template for Cobra to use. -Like help, the function and template are overridable through public methods: - -```go -cmd.SetUsageFunc(f func(*Command) error) -cmd.SetUsageTemplate(s string) -``` - -## Version Flag - -Cobra adds a top-level '--version' flag if the Version field is set on the root command. -Running an application with the '--version' flag will print the version to stdout using -the version template. The template can be customized using the -`cmd.SetVersionTemplate(s string)` function. - -## PreRun and PostRun Hooks - -It is possible to run functions before or after the main `Run` function of your command. The `PersistentPreRun` and `PreRun` functions will be executed before `Run`. `PersistentPostRun` and `PostRun` will be executed after `Run`. The `Persistent*Run` functions will be inherited by children if they do not declare their own. These functions are run in the following order: - -- `PersistentPreRun` -- `PreRun` -- `Run` -- `PostRun` -- `PersistentPostRun` - -An example of two commands which use all of these features is below. When the subcommand is executed, it will run the root command's `PersistentPreRun` but not the root command's `PersistentPostRun`: - -```go -package main - -import ( - "fmt" - - "github.com/spf13/cobra" -) - -func main() { - - var rootCmd = &cobra.Command{ - Use: "root [sub]", - Short: "My root command", - PersistentPreRun: func(cmd *cobra.Command, args []string) { - fmt.Printf("Inside rootCmd PersistentPreRun with args: %v\n", args) - }, - PreRun: func(cmd *cobra.Command, args []string) { - fmt.Printf("Inside rootCmd PreRun with args: %v\n", args) - }, - Run: func(cmd *cobra.Command, args []string) { - fmt.Printf("Inside rootCmd Run with args: %v\n", args) - }, - PostRun: func(cmd *cobra.Command, args []string) { - fmt.Printf("Inside rootCmd PostRun with args: %v\n", args) - }, - PersistentPostRun: func(cmd *cobra.Command, args []string) { - fmt.Printf("Inside rootCmd PersistentPostRun with args: %v\n", args) - }, - } - - var subCmd = &cobra.Command{ - Use: "sub [no options!]", - Short: "My subcommand", - PreRun: func(cmd *cobra.Command, args []string) { - fmt.Printf("Inside subCmd PreRun with args: %v\n", args) - }, - Run: func(cmd *cobra.Command, args []string) { - fmt.Printf("Inside subCmd Run with args: %v\n", args) - }, - PostRun: func(cmd *cobra.Command, args []string) { - fmt.Printf("Inside subCmd PostRun with args: %v\n", args) - }, - PersistentPostRun: func(cmd *cobra.Command, args []string) { - fmt.Printf("Inside subCmd PersistentPostRun with args: %v\n", args) - }, - } - - rootCmd.AddCommand(subCmd) - - rootCmd.SetArgs([]string{""}) - rootCmd.Execute() - fmt.Println() - rootCmd.SetArgs([]string{"sub", "arg1", "arg2"}) - rootCmd.Execute() -} -``` - -Output: -``` -Inside rootCmd PersistentPreRun with args: [] -Inside rootCmd PreRun with args: [] -Inside rootCmd Run with args: [] -Inside rootCmd PostRun with args: [] -Inside rootCmd PersistentPostRun with args: [] - -Inside rootCmd PersistentPreRun with args: [arg1 arg2] -Inside subCmd PreRun with args: [arg1 arg2] -Inside subCmd Run with args: [arg1 arg2] -Inside subCmd PostRun with args: [arg1 arg2] -Inside subCmd PersistentPostRun with args: [arg1 arg2] -``` - -## Suggestions when "unknown command" happens - -Cobra will print automatic suggestions when "unknown command" errors happen. This allows Cobra to behave similarly to the `git` command when a typo happens. For example: - -``` -$ hugo srever -Error: unknown command "srever" for "hugo" - -Did you mean this? - server - -Run 'hugo --help' for usage. -``` - -Suggestions are automatic based on every subcommand registered and use an implementation of [Levenshtein distance](http://en.wikipedia.org/wiki/Levenshtein_distance). Every registered command that matches a minimum distance of 2 (ignoring case) will be displayed as a suggestion. - -If you need to disable suggestions or tweak the string distance in your command, use: - -```go -command.DisableSuggestions = true -``` - -or - -```go -command.SuggestionsMinimumDistance = 1 -``` - -You can also explicitly set names for which a given command will be suggested using the `SuggestFor` attribute. This allows suggestions for strings that are not close in terms of string distance, but makes sense in your set of commands and for some which you don't want aliases. Example: - -``` -$ kubectl remove -Error: unknown command "remove" for "kubectl" - -Did you mean this? - delete - -Run 'kubectl help' for usage. -``` - -## Generating documentation for your command - -Cobra can generate documentation based on subcommands, flags, etc. Read more about it in the [docs generation documentation](doc/README.md). - -## Generating shell completions - -Cobra can generate a shell-completion file for the following shells: bash, zsh, fish, PowerShell. If you add more information to your commands, these completions can be amazingly powerful and flexible. Read more about it in [Shell Completions](shell_completions.md). +See [User Guide](user_guide.md). # License diff --git a/vendor/github.com/spf13/cobra/bash_completions.go b/vendor/github.com/spf13/cobra/bash_completions.go index 710614793..925e6e787 100644 --- a/vendor/github.com/spf13/cobra/bash_completions.go +++ b/vendor/github.com/spf13/cobra/bash_completions.go @@ -384,7 +384,7 @@ func writePostscript(buf io.StringWriter, name string) { name = strings.Replace(name, ":", "__", -1) WriteStringAndCheck(buf, fmt.Sprintf("__start_%s()\n", name)) WriteStringAndCheck(buf, fmt.Sprintf(`{ - local cur prev words cword + local cur prev words cword split declare -A flaghash 2>/dev/null || : declare -A aliashash 2>/dev/null || : if declare -F _init_completion >/dev/null 2>&1; then @@ -400,11 +400,13 @@ func writePostscript(buf io.StringWriter, name string) { local flags_with_completion=() local flags_completion=() local commands=("%[1]s") + local command_aliases=() local must_have_one_flag=() local must_have_one_noun=() local has_completion_function local last_command local nouns=() + local noun_aliases=() __%[1]s_handle_word } @@ -510,7 +512,7 @@ func writeLocalNonPersistentFlag(buf io.StringWriter, flag *pflag.Flag) { // Setup annotations for go completions for registered flags func prepareCustomAnnotationsForFlags(cmd *Command) { - for flag := range flagCompletionFunctions { + for flag := range cmd.Root().flagCompletionFunctions { // Make sure the completion script calls the __*_go_custom_completion function for // every registered flag. We need to do this here (and not when the flag was registered // for completion) so that we can know the root command name for the prefix diff --git a/vendor/github.com/spf13/cobra/bash_completions.md b/vendor/github.com/spf13/cobra/bash_completions.md index 130f99b92..52919b2fa 100644 --- a/vendor/github.com/spf13/cobra/bash_completions.md +++ b/vendor/github.com/spf13/cobra/bash_completions.md @@ -6,6 +6,8 @@ Please refer to [Shell Completions](shell_completions.md) for details. For backward compatibility, Cobra still supports its legacy dynamic completion solution (described below). Unlike the `ValidArgsFunction` solution, the legacy solution will only work for Bash shell-completion and not for other shells. This legacy solution can be used along-side `ValidArgsFunction` and `RegisterFlagCompletionFunc()`, as long as both solutions are not used for the same command. This provides a path to gradually migrate from the legacy solution to the new solution. +**Note**: Cobra's default `completion` command uses bash completion V2. If you are currently using Cobra's legacy dynamic completion solution, you should not use the default `completion` command but continue using your own. + The legacy solution allows you to inject bash functions into the bash completion script. Those bash functions are responsible for providing the completion choices for your own completions. Some code that works in kubernetes: diff --git a/vendor/github.com/spf13/cobra/bash_completionsV2.go b/vendor/github.com/spf13/cobra/bash_completionsV2.go new file mode 100644 index 000000000..8859b57c4 --- /dev/null +++ b/vendor/github.com/spf13/cobra/bash_completionsV2.go @@ -0,0 +1,302 @@ +package cobra + +import ( + "bytes" + "fmt" + "io" + "os" +) + +func (c *Command) genBashCompletion(w io.Writer, includeDesc bool) error { + buf := new(bytes.Buffer) + genBashComp(buf, c.Name(), includeDesc) + _, err := buf.WriteTo(w) + return err +} + +func genBashComp(buf io.StringWriter, name string, includeDesc bool) { + compCmd := ShellCompRequestCmd + if !includeDesc { + compCmd = ShellCompNoDescRequestCmd + } + + WriteStringAndCheck(buf, fmt.Sprintf(`# bash completion V2 for %-36[1]s -*- shell-script -*- + +__%[1]s_debug() +{ + if [[ -n ${BASH_COMP_DEBUG_FILE:-} ]]; then + echo "$*" >> "${BASH_COMP_DEBUG_FILE}" + fi +} + +# Macs have bash3 for which the bash-completion package doesn't include +# _init_completion. This is a minimal version of that function. +__%[1]s_init_completion() +{ + COMPREPLY=() + _get_comp_words_by_ref "$@" cur prev words cword +} + +# This function calls the %[1]s program to obtain the completion +# results and the directive. It fills the 'out' and 'directive' vars. +__%[1]s_get_completion_results() { + local requestComp lastParam lastChar args + + # Prepare the command to request completions for the program. + # Calling ${words[0]} instead of directly %[1]s allows to handle aliases + args=("${words[@]:1}") + requestComp="${words[0]} %[2]s ${args[*]}" + + lastParam=${words[$((${#words[@]}-1))]} + lastChar=${lastParam:$((${#lastParam}-1)):1} + __%[1]s_debug "lastParam ${lastParam}, lastChar ${lastChar}" + + if [ -z "${cur}" ] && [ "${lastChar}" != "=" ]; then + # If the last parameter is complete (there is a space following it) + # We add an extra empty parameter so we can indicate this to the go method. + __%[1]s_debug "Adding extra empty parameter" + requestComp="${requestComp} ''" + fi + + # When completing a flag with an = (e.g., %[1]s -n=<TAB>) + # bash focuses on the part after the =, so we need to remove + # the flag part from $cur + if [[ "${cur}" == -*=* ]]; then + cur="${cur#*=}" + fi + + __%[1]s_debug "Calling ${requestComp}" + # Use eval to handle any environment variables and such + out=$(eval "${requestComp}" 2>/dev/null) + + # Extract the directive integer at the very end of the output following a colon (:) + directive=${out##*:} + # Remove the directive + out=${out%%:*} + if [ "${directive}" = "${out}" ]; then + # There is not directive specified + directive=0 + fi + __%[1]s_debug "The completion directive is: ${directive}" + __%[1]s_debug "The completions are: ${out[*]}" +} + +__%[1]s_process_completion_results() { + local shellCompDirectiveError=%[3]d + local shellCompDirectiveNoSpace=%[4]d + local shellCompDirectiveNoFileComp=%[5]d + local shellCompDirectiveFilterFileExt=%[6]d + local shellCompDirectiveFilterDirs=%[7]d + + if [ $((directive & shellCompDirectiveError)) -ne 0 ]; then + # Error code. No completion. + __%[1]s_debug "Received error from custom completion go code" + return + else + if [ $((directive & shellCompDirectiveNoSpace)) -ne 0 ]; then + if [[ $(type -t compopt) = "builtin" ]]; then + __%[1]s_debug "Activating no space" + compopt -o nospace + else + __%[1]s_debug "No space directive not supported in this version of bash" + fi + fi + if [ $((directive & shellCompDirectiveNoFileComp)) -ne 0 ]; then + if [[ $(type -t compopt) = "builtin" ]]; then + __%[1]s_debug "Activating no file completion" + compopt +o default + else + __%[1]s_debug "No file completion directive not supported in this version of bash" + fi + fi + fi + + if [ $((directive & shellCompDirectiveFilterFileExt)) -ne 0 ]; then + # File extension filtering + local fullFilter filter filteringCmd + + # Do not use quotes around the $out variable or else newline + # characters will be kept. + for filter in ${out[*]}; do + fullFilter+="$filter|" + done + + filteringCmd="_filedir $fullFilter" + __%[1]s_debug "File filtering command: $filteringCmd" + $filteringCmd + elif [ $((directive & shellCompDirectiveFilterDirs)) -ne 0 ]; then + # File completion for directories only + + # Use printf to strip any trailing newline + local subdir + subdir=$(printf "%%s" "${out[0]}") + if [ -n "$subdir" ]; then + __%[1]s_debug "Listing directories in $subdir" + pushd "$subdir" >/dev/null 2>&1 && _filedir -d && popd >/dev/null 2>&1 || return + else + __%[1]s_debug "Listing directories in ." + _filedir -d + fi + else + __%[1]s_handle_standard_completion_case + fi + + __%[1]s_handle_special_char "$cur" : + __%[1]s_handle_special_char "$cur" = +} + +__%[1]s_handle_standard_completion_case() { + local tab comp + tab=$(printf '\t') + + local longest=0 + # Look for the longest completion so that we can format things nicely + while IFS='' read -r comp; do + # Strip any description before checking the length + comp=${comp%%%%$tab*} + # Only consider the completions that match + comp=$(compgen -W "$comp" -- "$cur") + if ((${#comp}>longest)); then + longest=${#comp} + fi + done < <(printf "%%s\n" "${out[@]}") + + local completions=() + while IFS='' read -r comp; do + if [ -z "$comp" ]; then + continue + fi + + __%[1]s_debug "Original comp: $comp" + comp="$(__%[1]s_format_comp_descriptions "$comp" "$longest")" + __%[1]s_debug "Final comp: $comp" + completions+=("$comp") + done < <(printf "%%s\n" "${out[@]}") + + while IFS='' read -r comp; do + COMPREPLY+=("$comp") + done < <(compgen -W "${completions[*]}" -- "$cur") + + # If there is a single completion left, remove the description text + if [ ${#COMPREPLY[*]} -eq 1 ]; then + __%[1]s_debug "COMPREPLY[0]: ${COMPREPLY[0]}" + comp="${COMPREPLY[0]%%%% *}" + __%[1]s_debug "Removed description from single completion, which is now: ${comp}" + COMPREPLY=() + COMPREPLY+=("$comp") + fi +} + +__%[1]s_handle_special_char() +{ + local comp="$1" + local char=$2 + if [[ "$comp" == *${char}* && "$COMP_WORDBREAKS" == *${char}* ]]; then + local word=${comp%%"${comp##*${char}}"} + local idx=${#COMPREPLY[*]} + while [[ $((--idx)) -ge 0 ]]; do + COMPREPLY[$idx]=${COMPREPLY[$idx]#"$word"} + done + fi +} + +__%[1]s_format_comp_descriptions() +{ + local tab + tab=$(printf '\t') + local comp="$1" + local longest=$2 + + # Properly format the description string which follows a tab character if there is one + if [[ "$comp" == *$tab* ]]; then + desc=${comp#*$tab} + comp=${comp%%%%$tab*} + + # $COLUMNS stores the current shell width. + # Remove an extra 4 because we add 2 spaces and 2 parentheses. + maxdesclength=$(( COLUMNS - longest - 4 )) + + # Make sure we can fit a description of at least 8 characters + # if we are to align the descriptions. + if [[ $maxdesclength -gt 8 ]]; then + # Add the proper number of spaces to align the descriptions + for ((i = ${#comp} ; i < longest ; i++)); do + comp+=" " + done + else + # Don't pad the descriptions so we can fit more text after the completion + maxdesclength=$(( COLUMNS - ${#comp} - 4 )) + fi + + # If there is enough space for any description text, + # truncate the descriptions that are too long for the shell width + if [ $maxdesclength -gt 0 ]; then + if [ ${#desc} -gt $maxdesclength ]; then + desc=${desc:0:$(( maxdesclength - 1 ))} + desc+="…" + fi + comp+=" ($desc)" + fi + fi + + # Must use printf to escape all special characters + printf "%%q" "${comp}" +} + +__start_%[1]s() +{ + local cur prev words cword split + + COMPREPLY=() + + # Call _init_completion from the bash-completion package + # to prepare the arguments properly + if declare -F _init_completion >/dev/null 2>&1; then + _init_completion -n "=:" || return + else + __%[1]s_init_completion -n "=:" || return + fi + + __%[1]s_debug + __%[1]s_debug "========= starting completion logic ==========" + __%[1]s_debug "cur is ${cur}, words[*] is ${words[*]}, #words[@] is ${#words[@]}, cword is $cword" + + # The user could have moved the cursor backwards on the command-line. + # We need to trigger completion from the $cword location, so we need + # to truncate the command-line ($words) up to the $cword location. + words=("${words[@]:0:$cword+1}") + __%[1]s_debug "Truncated words[*]: ${words[*]}," + + local out directive + __%[1]s_get_completion_results + __%[1]s_process_completion_results +} + +if [[ $(type -t compopt) = "builtin" ]]; then + complete -o default -F __start_%[1]s %[1]s +else + complete -o default -o nospace -F __start_%[1]s %[1]s +fi + +# ex: ts=4 sw=4 et filetype=sh +`, name, compCmd, + ShellCompDirectiveError, ShellCompDirectiveNoSpace, ShellCompDirectiveNoFileComp, + ShellCompDirectiveFilterFileExt, ShellCompDirectiveFilterDirs)) +} + +// GenBashCompletionFileV2 generates Bash completion version 2. +func (c *Command) GenBashCompletionFileV2(filename string, includeDesc bool) error { + outFile, err := os.Create(filename) + if err != nil { + return err + } + defer outFile.Close() + + return c.GenBashCompletionV2(outFile, includeDesc) +} + +// GenBashCompletionV2 generates Bash completion file version 2 +// and writes it to the passed writer. +func (c *Command) GenBashCompletionV2(w io.Writer, includeDesc bool) error { + return c.genBashCompletion(w, includeDesc) +} diff --git a/vendor/github.com/spf13/cobra/command.go b/vendor/github.com/spf13/cobra/command.go index d6732ad11..9f33a461f 100644 --- a/vendor/github.com/spf13/cobra/command.go +++ b/vendor/github.com/spf13/cobra/command.go @@ -63,9 +63,9 @@ type Command struct { // Example is examples of how to use the command. Example string - // ValidArgs is list of all valid non-flag arguments that are accepted in bash completions + // ValidArgs is list of all valid non-flag arguments that are accepted in shell completions ValidArgs []string - // ValidArgsFunction is an optional function that provides valid non-flag arguments for bash completion. + // ValidArgsFunction is an optional function that provides valid non-flag arguments for shell completion. // It is a dynamic version of using ValidArgs. // Only one of ValidArgs and ValidArgsFunction can be used for a command. ValidArgsFunction func(cmd *Command, args []string, toComplete string) ([]string, ShellCompDirective) @@ -74,11 +74,12 @@ type Command struct { Args PositionalArgs // ArgAliases is List of aliases for ValidArgs. - // These are not suggested to the user in the bash completion, + // These are not suggested to the user in the shell completion, // but accepted if entered manually. ArgAliases []string - // BashCompletionFunction is custom functions used by the bash autocompletion generator. + // BashCompletionFunction is custom bash functions used by the legacy bash autocompletion generator. + // For portability with other shells, it is recommended to instead use ValidArgsFunction BashCompletionFunction string // Deprecated defines, if this command is deprecated and should print this string when used. @@ -141,6 +142,9 @@ type Command struct { // that we can use on every pflag set and children commands globNormFunc func(f *flag.FlagSet, name string) flag.NormalizedName + //flagCompletionFunctions is map of flag completion functions. + flagCompletionFunctions map[*flag.Flag]func(cmd *Command, args []string, toComplete string) ([]string, ShellCompDirective) + // usageFunc is usage func defined by user. usageFunc func(*Command) error // usageTemplate is usage template defined by user. @@ -168,6 +172,9 @@ type Command struct { //FParseErrWhitelist flag parse errors to be ignored FParseErrWhitelist FParseErrWhitelist + // CompletionOptions is a set of options to control the handling of shell completion + CompletionOptions CompletionOptions + // commandsAreSorted defines, if command slice are sorted or not. commandsAreSorted bool // commandCalledAs is the name or alias value used to call this command. @@ -884,7 +891,8 @@ func (c *Command) preRun() { } // ExecuteContext is the same as Execute(), but sets the ctx on the command. -// Retrieve ctx by calling cmd.Context() inside your *Run lifecycle functions. +// Retrieve ctx by calling cmd.Context() inside your *Run lifecycle or ValidArgs +// functions. func (c *Command) ExecuteContext(ctx context.Context) error { c.ctx = ctx return c.Execute() @@ -898,6 +906,14 @@ func (c *Command) Execute() error { return err } +// ExecuteContextC is the same as ExecuteC(), but sets the ctx on the command. +// Retrieve ctx by calling cmd.Context() inside your *Run lifecycle or ValidArgs +// functions. +func (c *Command) ExecuteContextC(ctx context.Context) (*Command, error) { + c.ctx = ctx + return c.ExecuteC() +} + // ExecuteC executes the command. func (c *Command) ExecuteC() (cmd *Command, err error) { if c.ctx == nil { @@ -914,9 +930,10 @@ func (c *Command) ExecuteC() (cmd *Command, err error) { preExecHookFn(c) } - // initialize help as the last point possible to allow for user - // overriding + // initialize help at the last point to allow for user overriding c.InitDefaultHelpCmd() + // initialize completion at the last point to allow for user overriding + c.initDefaultCompletionCmd() args := c.args @@ -925,7 +942,7 @@ func (c *Command) ExecuteC() (cmd *Command, err error) { args = os.Args[1:] } - // initialize the hidden command to be used for bash completion + // initialize the hidden command to be used for shell completion c.initCompleteCmd(args) var flags []string diff --git a/vendor/github.com/spf13/cobra/custom_completions.go b/vendor/github.com/spf13/cobra/completions.go index fa060c147..4687674aa 100644 --- a/vendor/github.com/spf13/cobra/custom_completions.go +++ b/vendor/github.com/spf13/cobra/completions.go @@ -17,13 +17,19 @@ const ( ShellCompNoDescRequestCmd = "__completeNoDesc" ) -// Global map of flag completion functions. -var flagCompletionFunctions = map[*pflag.Flag]func(cmd *Command, args []string, toComplete string) ([]string, ShellCompDirective){} - // ShellCompDirective is a bit map representing the different behaviors the shell // can be instructed to have once completions have been provided. type ShellCompDirective int +type flagCompError struct { + subCommand string + flagName string +} + +func (e *flagCompError) Error() string { + return "Subcommand '" + e.subCommand + "' does not support flag '" + e.flagName + "'" +} + const ( // ShellCompDirectiveError indicates an error occurred and completions should be ignored. ShellCompDirectiveError ShellCompDirective = 1 << iota @@ -34,7 +40,6 @@ const ( // ShellCompDirectiveNoFileComp indicates that the shell should not provide // file completion even when no completion is provided. - // This currently does not work for zsh or bash < 4 ShellCompDirectiveNoFileComp // ShellCompDirectiveFilterFileExt indicates that the provided completions @@ -63,16 +68,47 @@ const ( ShellCompDirectiveDefault ShellCompDirective = 0 ) +const ( + // Constants for the completion command + compCmdName = "completion" + compCmdNoDescFlagName = "no-descriptions" + compCmdNoDescFlagDesc = "disable completion descriptions" + compCmdNoDescFlagDefault = false +) + +// CompletionOptions are the options to control shell completion +type CompletionOptions struct { + // DisableDefaultCmd prevents Cobra from creating a default 'completion' command + DisableDefaultCmd bool + // DisableNoDescFlag prevents Cobra from creating the '--no-descriptions' flag + // for shells that support completion descriptions + DisableNoDescFlag bool + // DisableDescriptions turns off all completion descriptions for shells + // that support them + DisableDescriptions bool +} + +// NoFileCompletions can be used to disable file completion for commands that should +// not trigger file completions. +func NoFileCompletions(cmd *Command, args []string, toComplete string) ([]string, ShellCompDirective) { + return nil, ShellCompDirectiveNoFileComp +} + // RegisterFlagCompletionFunc should be called to register a function to provide completion for a flag. func (c *Command) RegisterFlagCompletionFunc(flagName string, f func(cmd *Command, args []string, toComplete string) ([]string, ShellCompDirective)) error { flag := c.Flag(flagName) if flag == nil { return fmt.Errorf("RegisterFlagCompletionFunc: flag '%s' does not exist", flagName) } - if _, exists := flagCompletionFunctions[flag]; exists { + + root := c.Root() + if _, exists := root.flagCompletionFunctions[flag]; exists { return fmt.Errorf("RegisterFlagCompletionFunc: flag '%s' already registered", flagName) } - flagCompletionFunctions[flag] = f + if root.flagCompletionFunctions == nil { + root.flagCompletionFunctions = map[*pflag.Flag]func(cmd *Command, args []string, toComplete string) ([]string, ShellCompDirective){} + } + root.flagCompletionFunctions[flag] = f return nil } @@ -149,10 +185,6 @@ func (c *Command) initCompleteCmd(args []string) { fmt.Fprintln(finalCmd.OutOrStdout(), comp) } - if directive >= shellCompDirectiveMaxValue { - directive = ShellCompDirectiveDefault - } - // As the last printout, print the completion directive for the completion script to parse. // The directive integer must be that last character following a single colon (:). // The completion script expects :<directive> @@ -195,23 +227,41 @@ func (c *Command) getCompletions(args []string) (*Command, []string, ShellCompDi // Unable to find the real command. E.g., <program> someInvalidCmd <TAB> return c, []string{}, ShellCompDirectiveDefault, fmt.Errorf("Unable to find a command for arguments: %v", trimmedArgs) } + finalCmd.ctx = c.ctx // Check if we are doing flag value completion before parsing the flags. // This is important because if we are completing a flag value, we need to also // remove the flag name argument from the list of finalArgs or else the parsing // could fail due to an invalid value (incomplete) for the flag. - flag, finalArgs, toComplete, err := checkIfFlagCompletion(finalCmd, finalArgs, toComplete) - if err != nil { - // Error while attempting to parse flags - return finalCmd, []string{}, ShellCompDirectiveDefault, err - } + flag, finalArgs, toComplete, flagErr := checkIfFlagCompletion(finalCmd, finalArgs, toComplete) + + // Check if interspersed is false or -- was set on a previous arg. + // This works by counting the arguments. Normally -- is not counted as arg but + // if -- was already set or interspersed is false and there is already one arg then + // the extra added -- is counted as arg. + flagCompletion := true + _ = finalCmd.ParseFlags(append(finalArgs, "--")) + newArgCount := finalCmd.Flags().NArg() // Parse the flags early so we can check if required flags are set if err = finalCmd.ParseFlags(finalArgs); err != nil { return finalCmd, []string{}, ShellCompDirectiveDefault, fmt.Errorf("Error while parsing flags from args %v: %s", finalArgs, err.Error()) } - if flag != nil { + realArgCount := finalCmd.Flags().NArg() + if newArgCount > realArgCount { + // don't do flag completion (see above) + flagCompletion = false + } + // Error while attempting to parse flags + if flagErr != nil { + // If error type is flagCompError and we don't want flagCompletion we should ignore the error + if _, ok := flagErr.(*flagCompError); !(ok && !flagCompletion) { + return finalCmd, []string{}, ShellCompDirectiveDefault, flagErr + } + } + + if flag != nil && flagCompletion { // Check if we are completing a flag value subject to annotations if validExts, present := flag.Annotations[BashCompFilenameExt]; present { if len(validExts) != 0 { @@ -238,7 +288,7 @@ func (c *Command) getCompletions(args []string) (*Command, []string, ShellCompDi // When doing completion of a flag name, as soon as an argument starts with // a '-' we know it is a flag. We cannot use isFlagArg() here as it requires // the flag name to be complete - if flag == nil && len(toComplete) > 0 && toComplete[0] == '-' && !strings.Contains(toComplete, "=") { + if flag == nil && len(toComplete) > 0 && toComplete[0] == '-' && !strings.Contains(toComplete, "=") && flagCompletion { var completions []string // First check for required flags @@ -302,7 +352,7 @@ func (c *Command) getCompletions(args []string) (*Command, []string, ShellCompDi if len(finalArgs) == 0 && !foundLocalNonPersistentFlag { // We only complete sub-commands if: // - there are no arguments on the command-line and - // - there are no local, non-peristent flag on the command-line or TraverseChildren is true + // - there are no local, non-persistent flags on the command-line or TraverseChildren is true for _, subCmd := range finalCmd.Commands() { if subCmd.IsAvailableCommand() || subCmd == finalCmd.helpCommand { if strings.HasPrefix(subCmd.Name(), toComplete) { @@ -351,8 +401,8 @@ func (c *Command) getCompletions(args []string) (*Command, []string, ShellCompDi // Find the completion function for the flag or command var completionFn func(cmd *Command, args []string, toComplete string) ([]string, ShellCompDirective) - if flag != nil { - completionFn = flagCompletionFunctions[flag] + if flag != nil && flagCompletion { + completionFn = c.Root().flagCompletionFunctions[flag] } else { completionFn = finalCmd.ValidArgsFunction } @@ -435,6 +485,7 @@ func checkIfFlagCompletion(finalCmd *Command, args []string, lastArg string) (*p var flagName string trimmedArgs := args flagWithEqual := false + orgLastArg := lastArg // When doing completion of a flag name, as soon as an argument starts with // a '-' we know it is a flag. We cannot use isFlagArg() here as that function @@ -442,7 +493,16 @@ func checkIfFlagCompletion(finalCmd *Command, args []string, lastArg string) (*p if len(lastArg) > 0 && lastArg[0] == '-' { if index := strings.Index(lastArg, "="); index >= 0 { // Flag with an = - flagName = strings.TrimLeft(lastArg[:index], "-") + if strings.HasPrefix(lastArg[:index], "--") { + // Flag has full name + flagName = lastArg[2:index] + } else { + // Flag is shorthand + // We have to get the last shorthand flag name + // e.g. `-asd` => d to provide the correct completion + // https://github.com/spf13/cobra/issues/1257 + flagName = lastArg[index-1 : index] + } lastArg = lastArg[index+1:] flagWithEqual = true } else { @@ -459,8 +519,16 @@ func checkIfFlagCompletion(finalCmd *Command, args []string, lastArg string) (*p // If the flag contains an = it means it has already been fully processed, // so we don't need to deal with it here. if index := strings.Index(prevArg, "="); index < 0 { - flagName = strings.TrimLeft(prevArg, "-") - + if strings.HasPrefix(prevArg, "--") { + // Flag has full name + flagName = prevArg[2:] + } else { + // Flag is shorthand + // We have to get the last shorthand flag name + // e.g. `-asd` => d to provide the correct completion + // https://github.com/spf13/cobra/issues/1257 + flagName = prevArg[len(prevArg)-1:] + } // Remove the uncompleted flag or else there could be an error created // for an invalid value for that flag trimmedArgs = args[:len(args)-1] @@ -476,9 +544,8 @@ func checkIfFlagCompletion(finalCmd *Command, args []string, lastArg string) (*p flag := findFlag(finalCmd, flagName) if flag == nil { - // Flag not supported by this command, nothing to complete - err := fmt.Errorf("Subcommand '%s' does not support flag '%s'", finalCmd.Name(), flagName) - return nil, nil, "", err + // Flag not supported by this command, the interspersed option might be set so return the original args + return nil, args, orgLastArg, &flagCompError{subCommand: finalCmd.Name(), flagName: flagName} } if !flagWithEqual { @@ -494,6 +561,156 @@ func checkIfFlagCompletion(finalCmd *Command, args []string, lastArg string) (*p return flag, trimmedArgs, lastArg, nil } +// initDefaultCompletionCmd adds a default 'completion' command to c. +// This function will do nothing if any of the following is true: +// 1- the feature has been explicitly disabled by the program, +// 2- c has no subcommands (to avoid creating one), +// 3- c already has a 'completion' command provided by the program. +func (c *Command) initDefaultCompletionCmd() { + if c.CompletionOptions.DisableDefaultCmd || !c.HasSubCommands() { + return + } + + for _, cmd := range c.commands { + if cmd.Name() == compCmdName || cmd.HasAlias(compCmdName) { + // A completion command is already available + return + } + } + + haveNoDescFlag := !c.CompletionOptions.DisableNoDescFlag && !c.CompletionOptions.DisableDescriptions + + completionCmd := &Command{ + Use: compCmdName, + Short: "generate the autocompletion script for the specified shell", + Long: fmt.Sprintf(` +Generate the autocompletion script for %[1]s for the specified shell. +See each sub-command's help for details on how to use the generated script. +`, c.Root().Name()), + Args: NoArgs, + ValidArgsFunction: NoFileCompletions, + } + c.AddCommand(completionCmd) + + out := c.OutOrStdout() + noDesc := c.CompletionOptions.DisableDescriptions + shortDesc := "generate the autocompletion script for %s" + bash := &Command{ + Use: "bash", + Short: fmt.Sprintf(shortDesc, "bash"), + Long: fmt.Sprintf(` +Generate the autocompletion script for the bash shell. + +This script depends on the 'bash-completion' package. +If it is not installed already, you can install it via your OS's package manager. + +To load completions in your current shell session: +$ source <(%[1]s completion bash) + +To load completions for every new session, execute once: +Linux: + $ %[1]s completion bash > /etc/bash_completion.d/%[1]s +MacOS: + $ %[1]s completion bash > /usr/local/etc/bash_completion.d/%[1]s + +You will need to start a new shell for this setup to take effect. + `, c.Root().Name()), + Args: NoArgs, + DisableFlagsInUseLine: true, + ValidArgsFunction: NoFileCompletions, + RunE: func(cmd *Command, args []string) error { + return cmd.Root().GenBashCompletionV2(out, !noDesc) + }, + } + if haveNoDescFlag { + bash.Flags().BoolVar(&noDesc, compCmdNoDescFlagName, compCmdNoDescFlagDefault, compCmdNoDescFlagDesc) + } + + zsh := &Command{ + Use: "zsh", + Short: fmt.Sprintf(shortDesc, "zsh"), + Long: fmt.Sprintf(` +Generate the autocompletion script for the zsh shell. + +If shell completion is not already enabled in your environment you will need +to enable it. You can execute the following once: + +$ echo "autoload -U compinit; compinit" >> ~/.zshrc + +To load completions for every new session, execute once: +# Linux: +$ %[1]s completion zsh > "${fpath[1]}/_%[1]s" +# macOS: +$ %[1]s completion zsh > /usr/local/share/zsh/site-functions/_%[1]s + +You will need to start a new shell for this setup to take effect. +`, c.Root().Name()), + Args: NoArgs, + ValidArgsFunction: NoFileCompletions, + RunE: func(cmd *Command, args []string) error { + if noDesc { + return cmd.Root().GenZshCompletionNoDesc(out) + } + return cmd.Root().GenZshCompletion(out) + }, + } + if haveNoDescFlag { + zsh.Flags().BoolVar(&noDesc, compCmdNoDescFlagName, compCmdNoDescFlagDefault, compCmdNoDescFlagDesc) + } + + fish := &Command{ + Use: "fish", + Short: fmt.Sprintf(shortDesc, "fish"), + Long: fmt.Sprintf(` +Generate the autocompletion script for the fish shell. + +To load completions in your current shell session: +$ %[1]s completion fish | source + +To load completions for every new session, execute once: +$ %[1]s completion fish > ~/.config/fish/completions/%[1]s.fish + +You will need to start a new shell for this setup to take effect. +`, c.Root().Name()), + Args: NoArgs, + ValidArgsFunction: NoFileCompletions, + RunE: func(cmd *Command, args []string) error { + return cmd.Root().GenFishCompletion(out, !noDesc) + }, + } + if haveNoDescFlag { + fish.Flags().BoolVar(&noDesc, compCmdNoDescFlagName, compCmdNoDescFlagDefault, compCmdNoDescFlagDesc) + } + + powershell := &Command{ + Use: "powershell", + Short: fmt.Sprintf(shortDesc, "powershell"), + Long: fmt.Sprintf(` +Generate the autocompletion script for powershell. + +To load completions in your current shell session: +PS C:\> %[1]s completion powershell | Out-String | Invoke-Expression + +To load completions for every new session, add the output of the above command +to your powershell profile. +`, c.Root().Name()), + Args: NoArgs, + ValidArgsFunction: NoFileCompletions, + RunE: func(cmd *Command, args []string) error { + if noDesc { + return cmd.Root().GenPowerShellCompletion(out) + } + return cmd.Root().GenPowerShellCompletionWithDesc(out) + + }, + } + if haveNoDescFlag { + powershell.Flags().BoolVar(&noDesc, compCmdNoDescFlagName, compCmdNoDescFlagDefault, compCmdNoDescFlagDesc) + } + + completionCmd.AddCommand(bash, zsh, fish, powershell) +} + func findFlag(cmd *Command, name string) *pflag.Flag { flagSet := cmd.Flags() if len(name) == 1 { diff --git a/vendor/github.com/spf13/cobra/fish_completions.go b/vendor/github.com/spf13/cobra/fish_completions.go index 3e112347d..b0db323ac 100644 --- a/vendor/github.com/spf13/cobra/fish_completions.go +++ b/vendor/github.com/spf13/cobra/fish_completions.go @@ -21,44 +21,47 @@ func genFishComp(buf io.StringWriter, name string, includeDesc bool) { WriteStringAndCheck(buf, fmt.Sprintf("# fish completion for %-36s -*- shell-script -*-\n", name)) WriteStringAndCheck(buf, fmt.Sprintf(` function __%[1]s_debug - set file "$BASH_COMP_DEBUG_FILE" + set -l file "$BASH_COMP_DEBUG_FILE" if test -n "$file" echo "$argv" >> $file end end function __%[1]s_perform_completion - __%[1]s_debug "Starting __%[1]s_perform_completion with: $argv" + __%[1]s_debug "Starting __%[1]s_perform_completion" - set args (string split -- " " "$argv") - set lastArg "$args[-1]" + # Extract all args except the last one + set -l args (commandline -opc) + # Extract the last arg and escape it in case it is a space + set -l lastArg (string escape -- (commandline -ct)) __%[1]s_debug "args: $args" __%[1]s_debug "last arg: $lastArg" - set emptyArg "" - if test -z "$lastArg" - __%[1]s_debug "Setting emptyArg" - set emptyArg \"\" - end - __%[1]s_debug "emptyArg: $emptyArg" - - if not type -q "$args[1]" - # This can happen when "complete --do-complete %[2]s" is called when running this script. - __%[1]s_debug "Cannot find $args[1]. No completions." - return - end + set -l requestComp "$args[1] %[3]s $args[2..-1] $lastArg" - set requestComp "$args[1] %[3]s $args[2..-1] $emptyArg" __%[1]s_debug "Calling $requestComp" + set -l results (eval $requestComp 2> /dev/null) + + # Some programs may output extra empty lines after the directive. + # Let's ignore them or else it will break completion. + # Ref: https://github.com/spf13/cobra/issues/1279 + for line in $results[-1..1] + if test (string trim -- $line) = "" + # Found an empty line, remove it + set results $results[1..-2] + else + # Found non-empty line, we have our proper output + break + end + end - set results (eval $requestComp 2> /dev/null) - set comps $results[1..-2] - set directiveLine $results[-1] + set -l comps $results[1..-2] + set -l directiveLine $results[-1] # For Fish, when completing a flag with an = (e.g., <program> -n=<TAB>) # completions must be prefixed with the flag - set flagPrefix (string match -r -- '-.*=' "$lastArg") + set -l flagPrefix (string match -r -- '-.*=' "$lastArg") __%[1]s_debug "Comps: $comps" __%[1]s_debug "DirectiveLine: $directiveLine" @@ -71,115 +74,124 @@ function __%[1]s_perform_completion printf "%%s\n" "$directiveLine" end -# This function does three things: -# 1- Obtain the completions and store them in the global __%[1]s_comp_results -# 2- Set the __%[1]s_comp_do_file_comp flag if file completion should be performed -# and unset it otherwise -# 3- Return true if the completion results are not empty +# This function does two things: +# - Obtain the completions and store them in the global __%[1]s_comp_results +# - Return false if file completion should be performed function __%[1]s_prepare_completions + __%[1]s_debug "" + __%[1]s_debug "========= starting completion logic ==========" + # Start fresh - set --erase __%[1]s_comp_do_file_comp set --erase __%[1]s_comp_results - # Check if the command-line is already provided. This is useful for testing. - if not set --query __%[1]s_comp_commandLine - # Use the -c flag to allow for completion in the middle of the line - set __%[1]s_comp_commandLine (commandline -c) - end - __%[1]s_debug "commandLine is: $__%[1]s_comp_commandLine" - - set results (__%[1]s_perform_completion "$__%[1]s_comp_commandLine") - set --erase __%[1]s_comp_commandLine + set -l results (__%[1]s_perform_completion) __%[1]s_debug "Completion results: $results" if test -z "$results" __%[1]s_debug "No completion, probably due to a failure" # Might as well do file completion, in case it helps - set --global __%[1]s_comp_do_file_comp 1 return 1 end - set directive (string sub --start 2 $results[-1]) + set -l directive (string sub --start 2 $results[-1]) set --global __%[1]s_comp_results $results[1..-2] __%[1]s_debug "Completions are: $__%[1]s_comp_results" __%[1]s_debug "Directive is: $directive" - set shellCompDirectiveError %[4]d - set shellCompDirectiveNoSpace %[5]d - set shellCompDirectiveNoFileComp %[6]d - set shellCompDirectiveFilterFileExt %[7]d - set shellCompDirectiveFilterDirs %[8]d + set -l shellCompDirectiveError %[4]d + set -l shellCompDirectiveNoSpace %[5]d + set -l shellCompDirectiveNoFileComp %[6]d + set -l shellCompDirectiveFilterFileExt %[7]d + set -l shellCompDirectiveFilterDirs %[8]d if test -z "$directive" set directive 0 end - set compErr (math (math --scale 0 $directive / $shellCompDirectiveError) %% 2) + set -l compErr (math (math --scale 0 $directive / $shellCompDirectiveError) %% 2) if test $compErr -eq 1 __%[1]s_debug "Received error directive: aborting." # Might as well do file completion, in case it helps - set --global __%[1]s_comp_do_file_comp 1 return 1 end - set filefilter (math (math --scale 0 $directive / $shellCompDirectiveFilterFileExt) %% 2) - set dirfilter (math (math --scale 0 $directive / $shellCompDirectiveFilterDirs) %% 2) + set -l filefilter (math (math --scale 0 $directive / $shellCompDirectiveFilterFileExt) %% 2) + set -l dirfilter (math (math --scale 0 $directive / $shellCompDirectiveFilterDirs) %% 2) if test $filefilter -eq 1; or test $dirfilter -eq 1 __%[1]s_debug "File extension filtering or directory filtering not supported" # Do full file completion instead - set --global __%[1]s_comp_do_file_comp 1 return 1 end - set nospace (math (math --scale 0 $directive / $shellCompDirectiveNoSpace) %% 2) - set nofiles (math (math --scale 0 $directive / $shellCompDirectiveNoFileComp) %% 2) + set -l nospace (math (math --scale 0 $directive / $shellCompDirectiveNoSpace) %% 2) + set -l nofiles (math (math --scale 0 $directive / $shellCompDirectiveNoFileComp) %% 2) __%[1]s_debug "nospace: $nospace, nofiles: $nofiles" - # Important not to quote the variable for count to work - set numComps (count $__%[1]s_comp_results) - __%[1]s_debug "numComps: $numComps" - - if test $numComps -eq 1; and test $nospace -ne 0 - # To support the "nospace" directive we trick the shell - # by outputting an extra, longer completion. - __%[1]s_debug "Adding second completion to perform nospace directive" - set --append __%[1]s_comp_results $__%[1]s_comp_results[1]. - end - - if test $numComps -eq 0; and test $nofiles -eq 0 - __%[1]s_debug "Requesting file completion" - set --global __%[1]s_comp_do_file_comp 1 + # If we want to prevent a space, or if file completion is NOT disabled, + # we need to count the number of valid completions. + # To do so, we will filter on prefix as the completions we have received + # may not already be filtered so as to allow fish to match on different + # criteria than the prefix. + if test $nospace -ne 0; or test $nofiles -eq 0 + set -l prefix (commandline -t | string escape --style=regex) + __%[1]s_debug "prefix: $prefix" + + set -l completions (string match -r -- "^$prefix.*" $__%[1]s_comp_results) + set --global __%[1]s_comp_results $completions + __%[1]s_debug "Filtered completions are: $__%[1]s_comp_results" + + # Important not to quote the variable for count to work + set -l numComps (count $__%[1]s_comp_results) + __%[1]s_debug "numComps: $numComps" + + if test $numComps -eq 1; and test $nospace -ne 0 + # We must first split on \t to get rid of the descriptions to be + # able to check what the actual completion will be. + # We don't need descriptions anyway since there is only a single + # real completion which the shell will expand immediately. + set -l split (string split --max 1 \t $__%[1]s_comp_results[1]) + + # Fish won't add a space if the completion ends with any + # of the following characters: @=/:., + set -l lastChar (string sub -s -1 -- $split) + if not string match -r -q "[@=/:.,]" -- "$lastChar" + # In other cases, to support the "nospace" directive we trick the shell + # by outputting an extra, longer completion. + __%[1]s_debug "Adding second completion to perform nospace directive" + set --global __%[1]s_comp_results $split[1] $split[1]. + __%[1]s_debug "Completions are now: $__%[1]s_comp_results" + end + end + + if test $numComps -eq 0; and test $nofiles -eq 0 + # To be consistent with bash and zsh, we only trigger file + # completion when there are no other completions + __%[1]s_debug "Requesting file completion" + return 1 + end end - # If we don't want file completion, we must return true even if there - # are no completions found. This is because fish will perform the last - # completion command, even if its condition is false, if no other - # completion command was triggered - return (not set --query __%[1]s_comp_do_file_comp) + return 0 end # Since Fish completions are only loaded once the user triggers them, we trigger them ourselves # so we can properly delete any completions provided by another script. -# The space after the the program name is essential to trigger completion for the program -# and not completion of the program name itself. -complete --do-complete "%[2]s " > /dev/null 2>&1 -# Using '> /dev/null 2>&1' since '&>' is not supported in older versions of fish. +# Only do this if the program can be found, or else fish may print some errors; besides, +# the existing completions will only be loaded if the program can be found. +if type -q "%[2]s" + # The space after the program name is essential to trigger completion for the program + # and not completion of the program name itself. + # Also, we use '> /dev/null 2>&1' since '&>' is not supported in older versions of fish. + complete --do-complete "%[2]s " > /dev/null 2>&1 +end # Remove any pre-existing completions for the program since we will be handling all of them. complete -c %[2]s -e -# The order in which the below two lines are defined is very important so that __%[1]s_prepare_completions -# is called first. It is __%[1]s_prepare_completions that sets up the __%[1]s_comp_do_file_comp variable. -# -# This completion will be run second as complete commands are added FILO. -# It triggers file completion choices when __%[1]s_comp_do_file_comp is set. -complete -c %[2]s -n 'set --query __%[1]s_comp_do_file_comp' - -# This completion will be run first as complete commands are added FILO. -# The call to __%[1]s_prepare_completions will setup both __%[1]s_comp_results and __%[1]s_comp_do_file_comp. -# It provides the program's completion choices. +# The call to __%[1]s_prepare_completions will setup __%[1]s_comp_results +# which provides the program's completion choices. complete -c %[2]s -n '__%[1]s_prepare_completions' -f -a '$__%[1]s_comp_results' `, nameForVar, name, compCmd, diff --git a/vendor/github.com/spf13/cobra/go.mod b/vendor/github.com/spf13/cobra/go.mod index ff5614405..1fb9439dd 100644 --- a/vendor/github.com/spf13/cobra/go.mod +++ b/vendor/github.com/spf13/cobra/go.mod @@ -1,12 +1,11 @@ module github.com/spf13/cobra -go 1.12 +go 1.14 require ( github.com/cpuguy83/go-md2man/v2 v2.0.0 github.com/inconshreveable/mousetrap v1.0.0 - github.com/mitchellh/go-homedir v1.1.0 github.com/spf13/pflag v1.0.5 - github.com/spf13/viper v1.7.0 + github.com/spf13/viper v1.8.1 gopkg.in/yaml.v2 v2.4.0 ) diff --git a/vendor/github.com/spf13/cobra/go.sum b/vendor/github.com/spf13/cobra/go.sum index 9328ee3ee..3e22df29a 100644 --- a/vendor/github.com/spf13/cobra/go.sum +++ b/vendor/github.com/spf13/cobra/go.sum @@ -5,74 +5,141 @@ cloud.google.com/go v0.44.1/go.mod h1:iSa0KzasP4Uvy3f1mN/7PiObzGgflwredwwASm/v6A cloud.google.com/go v0.44.2/go.mod h1:60680Gw3Yr4ikxnPRS/oxxkBccT6SA1yMk63TGekxKY= cloud.google.com/go v0.45.1/go.mod h1:RpBamKRgapWJb87xiFSdk4g1CME7QZg3uwTez+TSTjc= cloud.google.com/go v0.46.3/go.mod h1:a6bKKbmY7er1mI7TEI4lsAkts/mkhTSZK8w33B4RAg0= +cloud.google.com/go v0.50.0/go.mod h1:r9sluTvynVuxRIOHXQEHMFffphuXHOMZMycpNR5e6To= +cloud.google.com/go v0.52.0/go.mod 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h1:rf3lG4BRIbNafJWhAfAdb/ePZxsR/4RtNHQocxwk9r4= honnef.co/go/tools v0.0.1-2019.2.3/go.mod h1:a3bituU0lyd329TUQxRnasdCoJDkEUEAqEt0JzvZhAg= +honnef.co/go/tools v0.0.1-2020.1.3/go.mod h1:X/FiERA/W4tHapMX5mGpAtMSVEeEUOyHaw9vFzvIQ3k= +honnef.co/go/tools v0.0.1-2020.1.4/go.mod h1:X/FiERA/W4tHapMX5mGpAtMSVEeEUOyHaw9vFzvIQ3k= rsc.io/binaryregexp v0.2.0/go.mod h1:qTv7/COck+e2FymRvadv62gMdZztPaShugOCi3I+8D8= +rsc.io/quote/v3 v3.1.0/go.mod h1:yEA65RcK8LyAZtP9Kv3t0HmxON59tX3rD+tICJqUlj0= +rsc.io/sampler v1.3.0/go.mod h1:T1hPZKmBbMNahiBKFy5HrXp6adAjACjK9JXDnKaTXpA= diff --git a/vendor/github.com/spf13/cobra/powershell_completions.go b/vendor/github.com/spf13/cobra/powershell_completions.go index c55be71cd..59234c09f 100644 --- a/vendor/github.com/spf13/cobra/powershell_completions.go +++ b/vendor/github.com/spf13/cobra/powershell_completions.go @@ -86,7 +86,7 @@ Register-ArgumentCompleter -CommandName '%[1]s' -ScriptBlock { # We add an extra empty parameter so we can indicate this to the go method. __%[1]s_debug "Adding extra empty parameter" `+" # We need to use `\"`\" to pass an empty argument a \"\" or '' does not work!!!"+` -`+" $RequestComp=\"$RequestComp\" + ' `\"`\"' "+` +`+" $RequestComp=\"$RequestComp\" + ' `\"`\"'"+` } __%[1]s_debug "Calling $RequestComp" @@ -140,19 +140,6 @@ Register-ArgumentCompleter -CommandName '%[1]s' -ScriptBlock { $Space = "" } - if (($Directive -band $ShellCompDirectiveNoFileComp) -ne 0 ) { - __%[1]s_debug "ShellCompDirectiveNoFileComp is called" - - if ($Values.Length -eq 0) { - # Just print an empty string here so the - # shell does not start to complete paths. - # We cannot use CompletionResult here because - # it does not accept an empty string as argument. - "" - return - } - } - if ((($Directive -band $ShellCompDirectiveFilterFileExt) -ne 0 ) -or (($Directive -band $ShellCompDirectiveFilterDirs) -ne 0 )) { __%[1]s_debug "ShellCompDirectiveFilterFileExt ShellCompDirectiveFilterDirs are not supported" @@ -165,20 +152,33 @@ Register-ArgumentCompleter -CommandName '%[1]s' -ScriptBlock { # filter the result $_.Name -like "$WordToComplete*" - # Join the flag back if we have a equal sign flag + # Join the flag back if we have an equal sign flag if ( $IsEqualFlag ) { __%[1]s_debug "Join the equal sign flag back to the completion value" $_.Name = $Flag + "=" + $_.Name } } + if (($Directive -band $ShellCompDirectiveNoFileComp) -ne 0 ) { + __%[1]s_debug "ShellCompDirectiveNoFileComp is called" + + if ($Values.Length -eq 0) { + # Just print an empty string here so the + # shell does not start to complete paths. + # We cannot use CompletionResult here because + # it does not accept an empty string as argument. + "" + return + } + } + # Get the current mode $Mode = (Get-PSReadLineKeyHandler | Where-Object {$_.Key -eq "Tab" }).Function __%[1]s_debug "Mode: $Mode" $Values | ForEach-Object { - # store temporay because switch will overwrite $_ + # store temporary because switch will overwrite $_ $comp = $_ # PowerShell supports three different completion modes diff --git a/vendor/github.com/spf13/cobra/shell_completions.md b/vendor/github.com/spf13/cobra/shell_completions.md index cd533ac3d..4ba06a11c 100644 --- a/vendor/github.com/spf13/cobra/shell_completions.md +++ b/vendor/github.com/spf13/cobra/shell_completions.md @@ -7,6 +7,15 @@ The currently supported shells are: - fish - PowerShell +Cobra will automatically provide your program with a fully functional `completion` command, +similarly to how it provides the `help` command. + +## Creating your own completion command + +If you do not wish to use the default `completion` command, you can choose to +provide your own, which will take precedence over the default one. (This also provides +backwards-compatibility with programs that already have their own `completion` command.) + If you are using the generator, you can create a completion command by running ```bash @@ -70,7 +79,7 @@ PowerShell: case "fish": cmd.Root().GenFishCompletion(os.Stdout, true) case "powershell": - cmd.Root().GenPowerShellCompletion(os.Stdout) + cmd.Root().GenPowerShellCompletionWithDesc(os.Stdout) } }, } @@ -78,6 +87,26 @@ PowerShell: **Note:** The cobra generator may include messages printed to stdout, for example, if the config file is loaded; this will break the auto-completion script so must be removed. +## Adapting the default completion command + +Cobra provides a few options for the default `completion` command. To configure such options you must set +the `CompletionOptions` field on the *root* command. + +To tell Cobra *not* to provide the default `completion` command: +``` +rootCmd.CompletionOptions.DisableDefaultCmd = true +``` + +To tell Cobra *not* to provide the user with the `--no-descriptions` flag to the completion sub-commands: +``` +rootCmd.CompletionOptions.DisableNoDescFlag = true +``` + +To tell Cobra to completely disable descriptions for completions: +``` +rootCmd.CompletionOptions.DisableDescriptions = true +``` + # Customizing completions The generated completion scripts will automatically handle completing commands and flags. However, you can make your completions much more powerful by providing information to complete your program's nouns and flag values. @@ -323,7 +352,10 @@ cmd.RegisterFlagCompletionFunc(flagName, func(cmd *cobra.Command, args []string, ``` ### Descriptions for completions -`zsh`, `fish` and `powershell` allow for descriptions to annotate completion choices. For commands and flags, Cobra will provide the descriptions automatically, based on usage information. For example, using zsh: +Cobra provides support for completion descriptions. Such descriptions are supported for each shell +(however, for bash, it is only available in the [completion V2 version](#bash-completion-v2)). +For commands and flags, Cobra will provide the descriptions automatically, based on usage information. +For example, using zsh: ``` $ helm s[tab] search -- search for a keyword in charts @@ -336,7 +368,7 @@ $ helm s[tab] search (search for a keyword in charts) show (show information of a chart) status (displays the status of the named release) ``` -Cobra allows you to add annotations to your own completions. Simply add the annotation text after each completion, following a `\t` separator. This technique applies to completions returned by `ValidArgs`, `ValidArgsFunction` and `RegisterFlagCompletionFunc()`. For example: +Cobra allows you to add descriptions to your own completions. Simply add the description text after each completion, following a `\t` separator. This technique applies to completions returned by `ValidArgs`, `ValidArgsFunction` and `RegisterFlagCompletionFunc()`. For example: ```go ValidArgsFunction: func(cmd *cobra.Command, args []string, toComplete string) ([]string, cobra.ShellCompDirective) { return []string{"harbor\tAn image registry", "thanos\tLong-term metrics"}, cobra.ShellCompDirectiveNoFileComp @@ -371,6 +403,37 @@ completion firstcommand secondcommand For backward compatibility, Cobra still supports its bash legacy dynamic completion solution. Please refer to [Bash Completions](bash_completions.md) for details. +### Bash completion V2 + +Cobra provides two versions for bash completion. The original bash completion (which started it all!) can be used by calling +`GenBashCompletion()` or `GenBashCompletionFile()`. + +A new V2 bash completion version is also available. This version can be used by calling `GenBashCompletionV2()` or +`GenBashCompletionFileV2()`. The V2 version does **not** support the legacy dynamic completion +(see [Bash Completions](bash_completions.md)) but instead works only with the Go dynamic completion +solution described in this document. +Unless your program already uses the legacy dynamic completion solution, it is recommended that you use the bash +completion V2 solution which provides the following extra features: +- Supports completion descriptions (like the other shells) +- Small completion script of less than 300 lines (v1 generates scripts of thousands of lines; `kubectl` for example has a bash v1 completion script of over 13K lines) +- Streamlined user experience thanks to a completion behavior aligned with the other shells + +`Bash` completion V2 supports descriptions for completions. When calling `GenBashCompletionV2()` or `GenBashCompletionFileV2()` +you must provide these functions with a parameter indicating if the completions should be annotated with a description; Cobra +will provide the description automatically based on usage information. You can choose to make this option configurable by +your users. + +``` +# With descriptions +$ helm s[tab][tab] +search (search for a keyword in charts) status (display the status of the named release) +show (show information of a chart) + +# Without descriptions +$ helm s[tab][tab] +search show status +``` +**Note**: Cobra's default `completion` command uses bash completion V2. If for some reason you need to use bash completion V1, you will need to implement your own `completion` command. ## Zsh completions Cobra supports native zsh completion generated from the root `cobra.Command`. diff --git a/vendor/github.com/spf13/cobra/user_guide.md b/vendor/github.com/spf13/cobra/user_guide.md new file mode 100644 index 000000000..311abce28 --- /dev/null +++ b/vendor/github.com/spf13/cobra/user_guide.md @@ -0,0 +1,637 @@ +# User Guide + +While you are welcome to provide your own organization, typically a Cobra-based +application will follow the following organizational structure: + +``` + ▾ appName/ + ▾ cmd/ + add.go + your.go + commands.go + here.go + main.go +``` + +In a Cobra app, typically the main.go file is very bare. It serves one purpose: initializing Cobra. + +```go +package main + +import ( + "{pathToYourApp}/cmd" +) + +func main() { + cmd.Execute() +} +``` + +## Using the Cobra Generator + +Cobra provides its own program that will create your application and add any +commands you want. It's the easiest way to incorporate Cobra into your application. + +[Here](https://github.com/spf13/cobra/blob/master/cobra/README.md) you can find more information about it. + +## Using the Cobra Library + +To manually implement Cobra you need to create a bare main.go file and a rootCmd file. +You will optionally provide additional commands as you see fit. + +### Create rootCmd + +Cobra doesn't require any special constructors. Simply create your commands. + +Ideally you place this in app/cmd/root.go: + +```go +var rootCmd = &cobra.Command{ + Use: "hugo", + Short: "Hugo is a very fast static site generator", + Long: `A Fast and Flexible Static Site Generator built with + love by spf13 and friends in Go. + Complete documentation is available at http://hugo.spf13.com`, + Run: func(cmd *cobra.Command, args []string) { + // Do Stuff Here + }, +} + +func Execute() { + if err := rootCmd.Execute(); err != nil { + fmt.Fprintln(os.Stderr, err) + os.Exit(1) + } +} +``` + +You will additionally define flags and handle configuration in your init() function. + +For example cmd/root.go: + +```go +package cmd + +import ( + "fmt" + "os" + + "github.com/spf13/cobra" + "github.com/spf13/viper" +) + +var ( + // Used for flags. + cfgFile string + userLicense string + + rootCmd = &cobra.Command{ + Use: "cobra", + Short: "A generator for Cobra based Applications", + Long: `Cobra is a CLI library for Go that empowers applications. +This application is a tool to generate the needed files +to quickly create a Cobra application.`, + } +) + +// Execute executes the root command. +func Execute() error { + return rootCmd.Execute() +} + +func init() { + cobra.OnInitialize(initConfig) + + rootCmd.PersistentFlags().StringVar(&cfgFile, "config", "", "config file (default is $HOME/.cobra.yaml)") + rootCmd.PersistentFlags().StringP("author", "a", "YOUR NAME", "author name for copyright attribution") + rootCmd.PersistentFlags().StringVarP(&userLicense, "license", "l", "", "name of license for the project") + rootCmd.PersistentFlags().Bool("viper", true, "use Viper for configuration") + viper.BindPFlag("author", rootCmd.PersistentFlags().Lookup("author")) + viper.BindPFlag("useViper", rootCmd.PersistentFlags().Lookup("viper")) + viper.SetDefault("author", "NAME HERE <EMAIL ADDRESS>") + viper.SetDefault("license", "apache") + + rootCmd.AddCommand(addCmd) + rootCmd.AddCommand(initCmd) +} + +func initConfig() { + if cfgFile != "" { + // Use config file from the flag. + viper.SetConfigFile(cfgFile) + } else { + // Find home directory. + home, err := os.UserHomeDir() + cobra.CheckErr(err) + + // Search config in home directory with name ".cobra" (without extension). + viper.AddConfigPath(home) + viper.SetConfigType("yaml") + viper.SetConfigName(".cobra") + } + + viper.AutomaticEnv() + + if err := viper.ReadInConfig(); err == nil { + fmt.Println("Using config file:", viper.ConfigFileUsed()) + } +} +``` + +### Create your main.go + +With the root command you need to have your main function execute it. +Execute should be run on the root for clarity, though it can be called on any command. + +In a Cobra app, typically the main.go file is very bare. It serves one purpose: to initialize Cobra. + +```go +package main + +import ( + "{pathToYourApp}/cmd" +) + +func main() { + cmd.Execute() +} +``` + +### Create additional commands + +Additional commands can be defined and typically are each given their own file +inside of the cmd/ directory. + +If you wanted to create a version command you would create cmd/version.go and +populate it with the following: + +```go +package cmd + +import ( + "fmt" + + "github.com/spf13/cobra" +) + +func init() { + rootCmd.AddCommand(versionCmd) +} + +var versionCmd = &cobra.Command{ + Use: "version", + Short: "Print the version number of Hugo", + Long: `All software has versions. This is Hugo's`, + Run: func(cmd *cobra.Command, args []string) { + fmt.Println("Hugo Static Site Generator v0.9 -- HEAD") + }, +} +``` + +### Returning and handling errors + +If you wish to return an error to the caller of a command, `RunE` can be used. + +```go +package cmd + +import ( + "fmt" + + "github.com/spf13/cobra" +) + +func init() { + rootCmd.AddCommand(tryCmd) +} + +var tryCmd = &cobra.Command{ + Use: "try", + Short: "Try and possibly fail at something", + RunE: func(cmd *cobra.Command, args []string) error { + if err := someFunc(); err != nil { + return err + } + return nil + }, +} +``` + +The error can then be caught at the execute function call. + +## Working with Flags + +Flags provide modifiers to control how the action command operates. + +### Assign flags to a command + +Since the flags are defined and used in different locations, we need to +define a variable outside with the correct scope to assign the flag to +work with. + +```go +var Verbose bool +var Source string +``` + +There are two different approaches to assign a flag. + +### Persistent Flags + +A flag can be 'persistent', meaning that this flag will be available to the +command it's assigned to as well as every command under that command. For +global flags, assign a flag as a persistent flag on the root. + +```go +rootCmd.PersistentFlags().BoolVarP(&Verbose, "verbose", "v", false, "verbose output") +``` + +### Local Flags + +A flag can also be assigned locally, which will only apply to that specific command. + +```go +localCmd.Flags().StringVarP(&Source, "source", "s", "", "Source directory to read from") +``` + +### Local Flag on Parent Commands + +By default, Cobra only parses local flags on the target command, and any local flags on +parent commands are ignored. By enabling `Command.TraverseChildren`, Cobra will +parse local flags on each command before executing the target command. + +```go +command := cobra.Command{ + Use: "print [OPTIONS] [COMMANDS]", + TraverseChildren: true, +} +``` + +### Bind Flags with Config + +You can also bind your flags with [viper](https://github.com/spf13/viper): +```go +var author string + +func init() { + rootCmd.PersistentFlags().StringVar(&author, "author", "YOUR NAME", "Author name for copyright attribution") + viper.BindPFlag("author", rootCmd.PersistentFlags().Lookup("author")) +} +``` + +In this example, the persistent flag `author` is bound with `viper`. +**Note**: the variable `author` will not be set to the value from config, +when the `--author` flag is not provided by user. + +More in [viper documentation](https://github.com/spf13/viper#working-with-flags). + +### Required flags + +Flags are optional by default. If instead you wish your command to report an error +when a flag has not been set, mark it as required: +```go +rootCmd.Flags().StringVarP(&Region, "region", "r", "", "AWS region (required)") +rootCmd.MarkFlagRequired("region") +``` + +Or, for persistent flags: +```go +rootCmd.PersistentFlags().StringVarP(&Region, "region", "r", "", "AWS region (required)") +rootCmd.MarkPersistentFlagRequired("region") +``` + +## Positional and Custom Arguments + +Validation of positional arguments can be specified using the `Args` field +of `Command`. + +The following validators are built in: + +- `NoArgs` - the command will report an error if there are any positional args. +- `ArbitraryArgs` - the command will accept any args. +- `OnlyValidArgs` - the command will report an error if there are any positional args that are not in the `ValidArgs` field of `Command`. +- `MinimumNArgs(int)` - the command will report an error if there are not at least N positional args. +- `MaximumNArgs(int)` - the command will report an error if there are more than N positional args. +- `ExactArgs(int)` - the command will report an error if there are not exactly N positional args. +- `ExactValidArgs(int)` - the command will report an error if there are not exactly N positional args OR if there are any positional args that are not in the `ValidArgs` field of `Command` +- `RangeArgs(min, max)` - the command will report an error if the number of args is not between the minimum and maximum number of expected args. + +An example of setting the custom validator: + +```go +var cmd = &cobra.Command{ + Short: "hello", + Args: func(cmd *cobra.Command, args []string) error { + if len(args) < 1 { + return errors.New("requires a color argument") + } + if myapp.IsValidColor(args[0]) { + return nil + } + return fmt.Errorf("invalid color specified: %s", args[0]) + }, + Run: func(cmd *cobra.Command, args []string) { + fmt.Println("Hello, World!") + }, +} +``` + +## Example + +In the example below, we have defined three commands. Two are at the top level +and one (cmdTimes) is a child of one of the top commands. In this case the root +is not executable, meaning that a subcommand is required. This is accomplished +by not providing a 'Run' for the 'rootCmd'. + +We have only defined one flag for a single command. + +More documentation about flags is available at https://github.com/spf13/pflag + +```go +package main + +import ( + "fmt" + "strings" + + "github.com/spf13/cobra" +) + +func main() { + var echoTimes int + + var cmdPrint = &cobra.Command{ + Use: "print [string to print]", + Short: "Print anything to the screen", + Long: `print is for printing anything back to the screen. +For many years people have printed back to the screen.`, + Args: cobra.MinimumNArgs(1), + Run: func(cmd *cobra.Command, args []string) { + fmt.Println("Print: " + strings.Join(args, " ")) + }, + } + + var cmdEcho = &cobra.Command{ + Use: "echo [string to echo]", + Short: "Echo anything to the screen", + Long: `echo is for echoing anything back. +Echo works a lot like print, except it has a child command.`, + Args: cobra.MinimumNArgs(1), + Run: func(cmd *cobra.Command, args []string) { + fmt.Println("Echo: " + strings.Join(args, " ")) + }, + } + + var cmdTimes = &cobra.Command{ + Use: "times [string to echo]", + Short: "Echo anything to the screen more times", + Long: `echo things multiple times back to the user by providing +a count and a string.`, + Args: cobra.MinimumNArgs(1), + Run: func(cmd *cobra.Command, args []string) { + for i := 0; i < echoTimes; i++ { + fmt.Println("Echo: " + strings.Join(args, " ")) + } + }, + } + + cmdTimes.Flags().IntVarP(&echoTimes, "times", "t", 1, "times to echo the input") + + var rootCmd = &cobra.Command{Use: "app"} + rootCmd.AddCommand(cmdPrint, cmdEcho) + cmdEcho.AddCommand(cmdTimes) + rootCmd.Execute() +} +``` + +For a more complete example of a larger application, please checkout [Hugo](http://gohugo.io/). + +## Help Command + +Cobra automatically adds a help command to your application when you have subcommands. +This will be called when a user runs 'app help'. Additionally, help will also +support all other commands as input. Say, for instance, you have a command called +'create' without any additional configuration; Cobra will work when 'app help +create' is called. Every command will automatically have the '--help' flag added. + +### Example + +The following output is automatically generated by Cobra. Nothing beyond the +command and flag definitions are needed. + + $ cobra help + + Cobra is a CLI library for Go that empowers applications. + This application is a tool to generate the needed files + to quickly create a Cobra application. + + Usage: + cobra [command] + + Available Commands: + add Add a command to a Cobra Application + help Help about any command + init Initialize a Cobra Application + + Flags: + -a, --author string author name for copyright attribution (default "YOUR NAME") + --config string config file (default is $HOME/.cobra.yaml) + -h, --help help for cobra + -l, --license string name of license for the project + --viper use Viper for configuration (default true) + + Use "cobra [command] --help" for more information about a command. + + +Help is just a command like any other. There is no special logic or behavior +around it. In fact, you can provide your own if you want. + +### Defining your own help + +You can provide your own Help command or your own template for the default command to use +with following functions: + +```go +cmd.SetHelpCommand(cmd *Command) +cmd.SetHelpFunc(f func(*Command, []string)) +cmd.SetHelpTemplate(s string) +``` + +The latter two will also apply to any children commands. + +## Usage Message + +When the user provides an invalid flag or invalid command, Cobra responds by +showing the user the 'usage'. + +### Example +You may recognize this from the help above. That's because the default help +embeds the usage as part of its output. + + $ cobra --invalid + Error: unknown flag: --invalid + Usage: + cobra [command] + + Available Commands: + add Add a command to a Cobra Application + help Help about any command + init Initialize a Cobra Application + + Flags: + -a, --author string author name for copyright attribution (default "YOUR NAME") + --config string config file (default is $HOME/.cobra.yaml) + -h, --help help for cobra + -l, --license string name of license for the project + --viper use Viper for configuration (default true) + + Use "cobra [command] --help" for more information about a command. + +### Defining your own usage +You can provide your own usage function or template for Cobra to use. +Like help, the function and template are overridable through public methods: + +```go +cmd.SetUsageFunc(f func(*Command) error) +cmd.SetUsageTemplate(s string) +``` + +## Version Flag + +Cobra adds a top-level '--version' flag if the Version field is set on the root command. +Running an application with the '--version' flag will print the version to stdout using +the version template. The template can be customized using the +`cmd.SetVersionTemplate(s string)` function. + +## PreRun and PostRun Hooks + +It is possible to run functions before or after the main `Run` function of your command. The `PersistentPreRun` and `PreRun` functions will be executed before `Run`. `PersistentPostRun` and `PostRun` will be executed after `Run`. The `Persistent*Run` functions will be inherited by children if they do not declare their own. These functions are run in the following order: + +- `PersistentPreRun` +- `PreRun` +- `Run` +- `PostRun` +- `PersistentPostRun` + +An example of two commands which use all of these features is below. When the subcommand is executed, it will run the root command's `PersistentPreRun` but not the root command's `PersistentPostRun`: + +```go +package main + +import ( + "fmt" + + "github.com/spf13/cobra" +) + +func main() { + + var rootCmd = &cobra.Command{ + Use: "root [sub]", + Short: "My root command", + PersistentPreRun: func(cmd *cobra.Command, args []string) { + fmt.Printf("Inside rootCmd PersistentPreRun with args: %v\n", args) + }, + PreRun: func(cmd *cobra.Command, args []string) { + fmt.Printf("Inside rootCmd PreRun with args: %v\n", args) + }, + Run: func(cmd *cobra.Command, args []string) { + fmt.Printf("Inside rootCmd Run with args: %v\n", args) + }, + PostRun: func(cmd *cobra.Command, args []string) { + fmt.Printf("Inside rootCmd PostRun with args: %v\n", args) + }, + PersistentPostRun: func(cmd *cobra.Command, args []string) { + fmt.Printf("Inside rootCmd PersistentPostRun with args: %v\n", args) + }, + } + + var subCmd = &cobra.Command{ + Use: "sub [no options!]", + Short: "My subcommand", + PreRun: func(cmd *cobra.Command, args []string) { + fmt.Printf("Inside subCmd PreRun with args: %v\n", args) + }, + Run: func(cmd *cobra.Command, args []string) { + fmt.Printf("Inside subCmd Run with args: %v\n", args) + }, + PostRun: func(cmd *cobra.Command, args []string) { + fmt.Printf("Inside subCmd PostRun with args: %v\n", args) + }, + PersistentPostRun: func(cmd *cobra.Command, args []string) { + fmt.Printf("Inside subCmd PersistentPostRun with args: %v\n", args) + }, + } + + rootCmd.AddCommand(subCmd) + + rootCmd.SetArgs([]string{""}) + rootCmd.Execute() + fmt.Println() + rootCmd.SetArgs([]string{"sub", "arg1", "arg2"}) + rootCmd.Execute() +} +``` + +Output: +``` +Inside rootCmd PersistentPreRun with args: [] +Inside rootCmd PreRun with args: [] +Inside rootCmd Run with args: [] +Inside rootCmd PostRun with args: [] +Inside rootCmd PersistentPostRun with args: [] + +Inside rootCmd PersistentPreRun with args: [arg1 arg2] +Inside subCmd PreRun with args: [arg1 arg2] +Inside subCmd Run with args: [arg1 arg2] +Inside subCmd PostRun with args: [arg1 arg2] +Inside subCmd PersistentPostRun with args: [arg1 arg2] +``` + +## Suggestions when "unknown command" happens + +Cobra will print automatic suggestions when "unknown command" errors happen. This allows Cobra to behave similarly to the `git` command when a typo happens. For example: + +``` +$ hugo srever +Error: unknown command "srever" for "hugo" + +Did you mean this? + server + +Run 'hugo --help' for usage. +``` + +Suggestions are automatic based on every subcommand registered and use an implementation of [Levenshtein distance](http://en.wikipedia.org/wiki/Levenshtein_distance). Every registered command that matches a minimum distance of 2 (ignoring case) will be displayed as a suggestion. + +If you need to disable suggestions or tweak the string distance in your command, use: + +```go +command.DisableSuggestions = true +``` + +or + +```go +command.SuggestionsMinimumDistance = 1 +``` + +You can also explicitly set names for which a given command will be suggested using the `SuggestFor` attribute. This allows suggestions for strings that are not close in terms of string distance, but makes sense in your set of commands and for some which you don't want aliases. Example: + +``` +$ kubectl remove +Error: unknown command "remove" for "kubectl" + +Did you mean this? + delete + +Run 'kubectl help' for usage. +``` + +## Generating documentation for your command + +Cobra can generate documentation based on subcommands, flags, etc. Read more about it in the [docs generation documentation](doc/README.md). + +## Generating shell completions + +Cobra can generate a shell-completion file for the following shells: bash, zsh, fish, PowerShell. If you add more information to your commands, these completions can be amazingly powerful and flexible. Read more about it in [Shell Completions](shell_completions.md). diff --git a/vendor/github.com/spf13/cobra/zsh_completions.go b/vendor/github.com/spf13/cobra/zsh_completions.go index 2e840285f..1afec30ea 100644 --- a/vendor/github.com/spf13/cobra/zsh_completions.go +++ b/vendor/github.com/spf13/cobra/zsh_completions.go @@ -95,7 +95,7 @@ _%[1]s() local shellCompDirectiveFilterFileExt=%[6]d local shellCompDirectiveFilterDirs=%[7]d - local lastParam lastChar flagPrefix requestComp out directive compCount comp lastComp + local lastParam lastChar flagPrefix requestComp out directive comp lastComp noSpace local -a completions __%[1]s_debug "\n========= starting completion logic ==========" @@ -163,7 +163,6 @@ _%[1]s() return fi - compCount=0 while IFS='\n' read -r comp; do if [ -n "$comp" ]; then # If requested, completions are returned with a description. @@ -175,13 +174,17 @@ _%[1]s() local tab=$(printf '\t') comp=${comp//$tab/:} - ((compCount++)) __%[1]s_debug "Adding completion: ${comp}" completions+=${comp} lastComp=$comp fi done < <(printf "%%s\n" "${out[@]}") + if [ $((directive & shellCompDirectiveNoSpace)) -ne 0 ]; then + __%[1]s_debug "Activating nospace." + noSpace="-S ''" + fi + if [ $((directive & shellCompDirectiveFilterFileExt)) -ne 0 ]; then # File extension filtering local filteringCmd @@ -208,25 +211,40 @@ _%[1]s() __%[1]s_debug "Listing directories in ." fi + local result _arguments '*:dirname:_files -/'" ${flagPrefix}" + result=$? if [ -n "$subdir" ]; then popd >/dev/null 2>&1 fi - elif [ $((directive & shellCompDirectiveNoSpace)) -ne 0 ] && [ ${compCount} -eq 1 ]; then - __%[1]s_debug "Activating nospace." - # We can use compadd here as there is no description when - # there is only one completion. - compadd -S '' "${lastComp}" - elif [ ${compCount} -eq 0 ]; then - if [ $((directive & shellCompDirectiveNoFileComp)) -ne 0 ]; then - __%[1]s_debug "deactivating file completion" + return $result + else + __%[1]s_debug "Calling _describe" + if eval _describe "completions" completions $flagPrefix $noSpace; then + __%[1]s_debug "_describe found some completions" + + # Return the success of having called _describe + return 0 else - # Perform file completion - __%[1]s_debug "activating file completion" - _arguments '*:filename:_files'" ${flagPrefix}" + __%[1]s_debug "_describe did not find completions." + __%[1]s_debug "Checking if we should do file completion." + if [ $((directive & shellCompDirectiveNoFileComp)) -ne 0 ]; then + __%[1]s_debug "deactivating file completion" + + # We must return an error code here to let zsh know that there were no + # completions found by _describe; this is what will trigger other + # matching algorithms to attempt to find completions. + # For example zsh can match letters in the middle of words. + return 1 + else + # Perform file completion + __%[1]s_debug "Activating file completion" + + # We must return the result of this command, so it must be the + # last command, or else we must store its result to return it. + _arguments '*:filename:_files'" ${flagPrefix}" + fi fi - else - _describe "completions" completions $(echo $flagPrefix) fi } |