зеркало из https://github.com/golang/dep.git
418 строки
11 KiB
Go
418 строки
11 KiB
Go
// Copyright 2016 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package dep
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import (
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"bytes"
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"fmt"
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"io"
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"reflect"
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"regexp"
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"sort"
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"sync"
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"github.com/golang/dep/internal/gps"
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"github.com/pelletier/go-toml"
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"github.com/pkg/errors"
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)
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// ManifestName is the manifest file name used by dep.
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const ManifestName = "Gopkg.toml"
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// Errors
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var (
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errInvalidConstraint = errors.New("\"constraint\" must be a TOML array of tables")
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errInvalidOverride = errors.New("\"override\" must be a TOML array of tables")
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errInvalidRequired = errors.New("\"required\" must be a TOML list of strings")
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errInvalidIgnored = errors.New("\"ignored\" must be a TOML list of strings")
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errInvalidProjectRoot = errors.New("ProjectRoot name validation failed")
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)
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// Manifest holds manifest file data and implements gps.RootManifest.
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type Manifest struct {
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Constraints gps.ProjectConstraints
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Ovr gps.ProjectConstraints
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Ignored []string
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Required []string
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}
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type rawManifest struct {
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Constraints []rawProject `toml:"constraint,omitempty"`
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Overrides []rawProject `toml:"override,omitempty"`
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Ignored []string `toml:"ignored,omitempty"`
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Required []string `toml:"required,omitempty"`
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}
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type rawProject struct {
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Name string `toml:"name"`
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Branch string `toml:"branch,omitempty"`
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Revision string `toml:"revision,omitempty"`
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Version string `toml:"version,omitempty"`
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Source string `toml:"source,omitempty"`
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}
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// NewManifest instantites a new manifest.
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func NewManifest() *Manifest {
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return &Manifest{
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Constraints: make(gps.ProjectConstraints),
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Ovr: make(gps.ProjectConstraints),
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}
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}
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func validateManifest(s string) ([]error, error) {
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var warns []error
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// Load the TomlTree from string
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tree, err := toml.Load(s)
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if err != nil {
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return warns, errors.Wrap(err, "Unable to load TomlTree from string")
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}
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// Convert tree to a map
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manifest := tree.ToMap()
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// match abbreviated git hash (7chars) or hg hash (12chars)
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abbrevRevHash := regexp.MustCompile("^[a-f0-9]{7}([a-f0-9]{5})?$")
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// Look for unknown fields and collect errors
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for prop, val := range manifest {
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switch prop {
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case "metadata":
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// Check if metadata is of Map type
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if reflect.TypeOf(val).Kind() != reflect.Map {
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warns = append(warns, errors.New("metadata should be a TOML table"))
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}
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case "constraint", "override":
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valid := true
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// Invalid if type assertion fails. Not a TOML array of tables.
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if rawProj, ok := val.([]interface{}); ok {
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// Check element type. Must be a map. Checking one element would be
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// enough because TOML doesn't allow mixing of types.
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if reflect.TypeOf(rawProj[0]).Kind() != reflect.Map {
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valid = false
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}
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if valid {
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// Iterate through each array of tables
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for _, v := range rawProj {
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// Check the individual field's key to be valid
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for key, value := range v.(map[string]interface{}) {
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// Check if the key is valid
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switch key {
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case "name", "branch", "version", "source":
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// valid key
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case "revision":
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if valueStr, ok := value.(string); ok {
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if abbrevRevHash.MatchString(valueStr) {
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warns = append(warns, fmt.Errorf("revision %q should not be in abbreviated form", valueStr))
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}
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}
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case "metadata":
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// Check if metadata is of Map type
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if reflect.TypeOf(value).Kind() != reflect.Map {
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warns = append(warns, fmt.Errorf("metadata in %q should be a TOML table", prop))
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}
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default:
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// unknown/invalid key
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warns = append(warns, fmt.Errorf("Invalid key %q in %q", key, prop))
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}
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}
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}
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}
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} else {
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valid = false
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}
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if !valid {
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if prop == "constraint" {
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return warns, errInvalidConstraint
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}
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if prop == "override" {
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return warns, errInvalidOverride
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}
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}
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case "ignored", "required":
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valid := true
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if rawList, ok := val.([]interface{}); ok {
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// Check element type of the array. TOML doesn't let mixing of types in
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// array. Checking one element would be enough. Empty array is valid.
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if len(rawList) > 0 && reflect.TypeOf(rawList[0]).Kind() != reflect.String {
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valid = false
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}
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} else {
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valid = false
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}
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if !valid {
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if prop == "ignored" {
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return warns, errInvalidIgnored
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}
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if prop == "required" {
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return warns, errInvalidRequired
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}
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}
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default:
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warns = append(warns, fmt.Errorf("Unknown field in manifest: %v", prop))
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}
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}
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return warns, nil
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}
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// ValidateProjectRoots validates the project roots present in manifest.
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func ValidateProjectRoots(c *Ctx, m *Manifest, sm gps.SourceManager) error {
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// Channel to receive all the errors
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errorCh := make(chan error, len(m.Constraints)+len(m.Ovr))
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var wg sync.WaitGroup
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validate := func(pr gps.ProjectRoot) {
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defer wg.Done()
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origPR, err := sm.DeduceProjectRoot(string(pr))
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if err != nil {
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errorCh <- err
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} else if origPR != pr {
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errorCh <- fmt.Errorf("the name for %q should be changed to %q", pr, origPR)
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}
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}
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for pr := range m.Constraints {
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wg.Add(1)
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go validate(pr)
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}
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for pr := range m.Ovr {
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wg.Add(1)
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go validate(pr)
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}
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wg.Wait()
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close(errorCh)
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var valErr error
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if len(errorCh) > 0 {
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valErr = errInvalidProjectRoot
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c.Err.Printf("The following issues were found in Gopkg.toml:\n\n")
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for err := range errorCh {
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c.Err.Println(" ✗", err.Error())
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}
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c.Err.Println()
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}
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return valErr
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}
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// readManifest returns a Manifest read from r and a slice of validation warnings.
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func readManifest(r io.Reader) (*Manifest, []error, error) {
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buf := &bytes.Buffer{}
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_, err := buf.ReadFrom(r)
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if err != nil {
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return nil, nil, errors.Wrap(err, "Unable to read byte stream")
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}
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warns, err := validateManifest(buf.String())
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if err != nil {
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return nil, warns, errors.Wrap(err, "Manifest validation failed")
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}
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raw := rawManifest{}
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err = toml.Unmarshal(buf.Bytes(), &raw)
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if err != nil {
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return nil, warns, errors.Wrap(err, "Unable to parse the manifest as TOML")
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}
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m, err := fromRawManifest(raw)
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return m, warns, err
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}
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func fromRawManifest(raw rawManifest) (*Manifest, error) {
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m := NewManifest()
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m.Constraints = make(gps.ProjectConstraints, len(raw.Constraints))
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m.Ovr = make(gps.ProjectConstraints, len(raw.Overrides))
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m.Ignored = raw.Ignored
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m.Required = raw.Required
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for i := 0; i < len(raw.Constraints); i++ {
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name, prj, err := toProject(raw.Constraints[i])
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if err != nil {
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return nil, err
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}
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if _, exists := m.Constraints[name]; exists {
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return nil, errors.Errorf("multiple dependencies specified for %s, can only specify one", name)
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}
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m.Constraints[name] = prj
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}
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for i := 0; i < len(raw.Overrides); i++ {
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name, prj, err := toProject(raw.Overrides[i])
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if err != nil {
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return nil, err
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}
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if _, exists := m.Ovr[name]; exists {
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return nil, errors.Errorf("multiple overrides specified for %s, can only specify one", name)
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}
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m.Ovr[name] = prj
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}
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return m, nil
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}
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// toProject interprets the string representations of project information held in
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// a rawProject, converting them into a proper gps.ProjectProperties. An
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// error is returned if the rawProject contains some invalid combination -
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// for example, if both a branch and version constraint are specified.
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func toProject(raw rawProject) (n gps.ProjectRoot, pp gps.ProjectProperties, err error) {
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n = gps.ProjectRoot(raw.Name)
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if raw.Branch != "" {
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if raw.Version != "" || raw.Revision != "" {
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return n, pp, errors.Errorf("multiple constraints specified for %s, can only specify one", n)
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}
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pp.Constraint = gps.NewBranch(raw.Branch)
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} else if raw.Version != "" {
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if raw.Revision != "" {
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return n, pp, errors.Errorf("multiple constraints specified for %s, can only specify one", n)
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}
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// always semver if we can
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pp.Constraint, err = gps.NewSemverConstraintIC(raw.Version)
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if err != nil {
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// but if not, fall back on plain versions
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pp.Constraint = gps.NewVersion(raw.Version)
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}
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} else if raw.Revision != "" {
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pp.Constraint = gps.Revision(raw.Revision)
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} else {
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// If the user specifies nothing, it means an open constraint (accept
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// anything).
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pp.Constraint = gps.Any()
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}
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pp.Source = raw.Source
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return n, pp, nil
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}
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// toRaw converts the manifest into a representation suitable to write to the manifest file
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func (m *Manifest) toRaw() rawManifest {
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raw := rawManifest{
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Constraints: make([]rawProject, 0, len(m.Constraints)),
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Overrides: make([]rawProject, 0, len(m.Ovr)),
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Ignored: m.Ignored,
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Required: m.Required,
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}
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for n, prj := range m.Constraints {
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raw.Constraints = append(raw.Constraints, toRawProject(n, prj))
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}
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sort.Sort(sortedRawProjects(raw.Constraints))
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for n, prj := range m.Ovr {
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raw.Overrides = append(raw.Overrides, toRawProject(n, prj))
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}
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sort.Sort(sortedRawProjects(raw.Overrides))
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return raw
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}
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type sortedRawProjects []rawProject
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func (s sortedRawProjects) Len() int { return len(s) }
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func (s sortedRawProjects) Swap(i, j int) { s[i], s[j] = s[j], s[i] }
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func (s sortedRawProjects) Less(i, j int) bool {
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l, r := s[i], s[j]
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if l.Name < r.Name {
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return true
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}
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if r.Name < l.Name {
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return false
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}
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return l.Source < r.Source
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}
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// MarshalTOML serializes this manifest into TOML via an intermediate raw form.
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func (m *Manifest) MarshalTOML() ([]byte, error) {
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raw := m.toRaw()
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result, err := toml.Marshal(raw)
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return result, errors.Wrap(err, "Unable to marshal the lock to a TOML string")
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}
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func toRawProject(name gps.ProjectRoot, project gps.ProjectProperties) rawProject {
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raw := rawProject{
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Name: string(name),
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Source: project.Source,
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}
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if v, ok := project.Constraint.(gps.Version); ok {
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switch v.Type() {
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case gps.IsRevision:
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raw.Revision = v.String()
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case gps.IsBranch:
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raw.Branch = v.String()
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case gps.IsSemver, gps.IsVersion:
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raw.Version = v.ImpliedCaretString()
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}
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return raw
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}
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// We simply don't allow for a case where the user could directly
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// express a 'none' constraint, so we can ignore it here. We also ignore
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// the 'any' case, because that's the other possibility, and it's what
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// we interpret not having any constraint expressions at all to mean.
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// if !gps.IsAny(pp.Constraint) && !gps.IsNone(pp.Constraint) {
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if !gps.IsAny(project.Constraint) && project.Constraint != nil {
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// Has to be a semver range.
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raw.Version = project.Constraint.ImpliedCaretString()
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}
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return raw
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}
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// DependencyConstraints returns a list of project-level constraints.
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func (m *Manifest) DependencyConstraints() gps.ProjectConstraints {
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return m.Constraints
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}
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// Overrides returns a list of project-level override constraints.
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func (m *Manifest) Overrides() gps.ProjectConstraints {
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return m.Ovr
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}
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// IgnoredPackages returns a set of import paths to ignore.
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func (m *Manifest) IgnoredPackages() map[string]bool {
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if len(m.Ignored) == 0 {
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return nil
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}
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mp := make(map[string]bool, len(m.Ignored))
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for _, i := range m.Ignored {
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mp[i] = true
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}
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return mp
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}
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// HasConstraintsOn checks if the manifest contains either constraints or
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// overrides on the provided ProjectRoot.
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func (m *Manifest) HasConstraintsOn(root gps.ProjectRoot) bool {
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if _, has := m.Constraints[root]; has {
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return true
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}
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if _, has := m.Ovr[root]; has {
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return true
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}
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return false
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}
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// RequiredPackages returns a set of import paths to require.
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func (m *Manifest) RequiredPackages() map[string]bool {
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if len(m.Required) == 0 {
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return nil
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}
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mp := make(map[string]bool, len(m.Required))
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for _, i := range m.Required {
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mp[i] = true
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}
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return mp
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}
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